Transcript
SOURCE TRANSCRIPT
This transcript is downloaded from the source you provided but we haven't reviewed it for accuracy. Treat it as a starting point, not a verbatim record. You can also request an AI-transcription of the audio file with the button to the left.
These are YouTube's auto-generated captions, not a human transcript — expect occasional errors, especially with names and technical terms.
[0:00]
It's just after 10:00.
[0:04]
Glad you all found the place.
[0:06]
This is definitely
[0:08]
fancier digs than we're used to.
[0:12]
Um
[0:14]
Well, let's get Let's get started. Um I
[0:16]
see we've got a number of folks online
[0:18]
as well and uh we've got a pretty full
[0:22]
agenda here, so
[0:24]
um
[0:25]
the the primary things that we we want
[0:27]
to try to accomplish in today's meeting
[0:30]
um we've got two different things that
[0:33]
um that we've been working on over the
[0:35]
last year. Want to try to move those
[0:36]
forward. One is the protocol for
[0:39]
calculating salinity um that Christine's
[0:42]
been working on for quite a while and um
[0:46]
so hoping that can move forward and then
[0:48]
also we have the long-term salinity management plan
[0:52]
that's a draft and talk about that and
[0:55]
see if that's something ready that's
[0:57]
move to move forward to and and then
[0:59]
also we we have our our typical updates
[1:02]
on conditions at the lake and talking
[1:05]
about the where we are with salinity and
[1:08]
um and if and where we want to go with
[1:09]
that. So
[1:11]
lots of things to cover. Anything else
[1:12]
anybody wants to add
[1:15]
to the agenda? Uh Jeff, I'd like to have
[1:18]
a little bit of a discussion just about
[1:20]
um
[1:21]
perhaps thresholds, things that we we
[1:23]
may want to consider this uh summer or
[1:25]
spring as we consider if we need to
[1:27]
alter the berm or just anything else
[1:28]
that we need to think Okay, fantastic.
[1:33]
Will do.
[1:35]
All right, so let's let's just start
[1:37]
with introductions. I guess
[1:39]
we all have a microphone. That's
[1:41]
different than normal, so please all you
[1:43]
have to do is hit the button and then
[1:45]
we'll pass a microphone around the back
[1:47]
as well um for those folks. Um I'm Jeff
[1:50]
Den Blakeer with Jacobs um facilitating
[1:53]
the Salinity Advisory Committee.
[1:56]
I'm Angela Gong with Forestry, Fire, and
[1:58]
State Lands.
[2:00]
Phil Brown, Great Salt Lake Brine Shrimp
[2:01]
Cooperative.
[2:03]
Thomas Bosteels, Great Salt Lake Brine
[2:05]
Shrimp Cooperative.
[2:09]
Elliot Jagnecki, Utah Geological Survey.
[2:12]
Andrew Rupke, Utah Geological Survey.
[2:16]
Joe Havassey, Compass Minerals.
[2:18]
Mike Freeman, USGS.
[2:22]
Christine Ramsey, USGS.
[2:25]
Kyle Stone, Wildlife Resources.
[2:27]
Ben Starman, Forestry, Fire, and State
[2:29]
Lands.
[2:31]
Emma Whitaker, Forestry, Fire, and State
[2:33]
Lands.
[2:35]
Travis Anderson, Morton Salt.
[2:38]
Jake Alexander, Forestry, Fire, and
[2:39]
State Lands.
[2:41]
Ryan Doughty, Cargill Salt.
[2:44]
Lynn de Freitas, Friends of Great Salt
[2:45]
Lake.
[2:47]
Laura Vernon, Water Resources.
[2:51]
Great. Well, thank you. Oh, and then
[2:53]
online,
[2:54]
um we have a number of folks as well. Um
[2:57]
see, Leila Madie with Water Resources,
[2:59]
um Jim Harris with the Division of Water
[3:02]
Quality.
[3:03]
Jory Kirk Corkery and Bonnie
[3:08]
Just got a lot of feedback here. Oh,
[3:10]
there we go. Thank you, whoever fixed
[3:12]
that. Um and Bonnie Baxter from
[3:14]
Westminster.
[3:17]
Uh Rob Dubuc with Friends and Bill
[3:20]
Johnson at the University of Utah.
[3:23]
Did I miss anybody?
[3:28]
I don't know if we have an open
[3:29]
microphone or I guess we'll figure it
[3:32]
out.
[3:34]
All right.
[3:35]
So, this first part of the agenda, what
[3:38]
we want to Oh, I actually let me back
[3:40]
up. Um we sent out a meeting summary. We
[3:43]
last met in October.
[3:45]
Um sent that out back in February and
[3:48]
now hopefully you had a chance to review
[3:50]
that. I wanted to just if anybody had
[3:52]
any comments or changes that they wanted
[3:55]
to make to that that summary.
[4:00]
And if not, if you have um
[4:04]
entertain a motion to approve approve
[4:06]
those that summary.
[4:08]
Thank you, Thomas. And a second?
[4:11]
And Kyle, thank you.
[4:14]
All those um in favor of approving them,
[4:17]
say I.
[4:19]
Any opposed?
[4:21]
Any further discussion?
[4:24]
Oh, Bonnie says I as well. Thank you.
[4:28]
Um so they're approved unanimously.
[4:31]
So the first thing I wanted to do um is
[4:34]
just go through some updates.
[4:36]
Um Christine has agreed again to give us
[4:39]
an update on on lake conditions.
[5:24]
Good morning, everybody. I made it here
[5:26]
um
[5:27]
to give you an update. And we will talk
[5:29]
about Mike Freeman's here. Has everybody
[5:31]
met Mike in very another places? Mike is
[5:34]
our field office chief for uh Salt Lake
[5:36]
City office. So he coordinates a lot of
[5:37]
our stream gagers um that work locally
[5:39]
and knows a lot about the lake. He has a
[5:40]
ton of experience on the lake. So
[5:42]
excited to have him here today.
[5:43]
He's going to present what Ryan usually
[5:45]
does on lake elevation, stream flow
[5:47]
updates, and then I'll I'll jump in with
[5:50]
the salinity update, and then I think
[5:52]
that's it for this first segment, so.
[5:56]
Sure.
[6:02]
Okay, so this is
[6:05]
the Salt Air gauge, so this is South
[6:07]
Arm. The daily value last Friday was
[6:11]
4192.4.
[6:12]
Our seasonal low occurred in like
[6:14]
October at 4191.
[6:17]
We've came up about 1.4 ft since that
[6:20]
seasonal low. Looking at the hydrograph,
[6:23]
I think we're maybe peaked for the year,
[6:27]
maybe like
[6:29]
March 22nd is when I think we kind of
[6:31]
have the peak. We'll see how it kind of
[6:32]
shakes out the next little bit.
[6:36]
But I don't think it's going to go up
[6:38]
that much. It might just kind of level
[6:40]
out. This is the North Arm, so this is
[6:44]
at the Saline gauge.
[6:46]
Daily value last Friday was 4191.5.
[6:49]
Seasonal low is in October-December. We
[6:51]
kind of flattened out at 4190.7.
[6:55]
We're up about 8/10 of a foot. And the
[6:58]
difference right now between the North
[7:00]
Arm and South Arm is about 9/10 of a
[7:02]
foot.
[7:04]
And that is probably
[7:06]
that might come up just a little bit
[7:08]
more as we get more
[7:10]
discharge through the the new breach.
[7:15]
Here's some of the the major inflows,
[7:18]
and this is kind of just a cumulative
[7:19]
discharge plot of kind of how conditions
[7:22]
vary over the course of the period of
[7:25]
record. So this is the Corrine gauge, so
[7:28]
you can see we're kind of in that
[7:30]
much
[7:32]
below normal right now,
[7:34]
I guess below normal, so kind of in that
[7:36]
10 to 25% range. Black line is a current
[7:40]
hydrograph.
[7:42]
If we look at the Weber River near Plain
[7:45]
City, we're getting in that much below,
[7:47]
so kind of that 5 to 10% um really low
[7:50]
conditions on on the Weber River right
[7:52]
now, at least lower down.
[7:56]
Um Farmington Bay, it's been actually
[7:59]
um
[8:00]
kind of in that normal condition. Uh I
[8:02]
think the rain has really we've kind of
[8:04]
noticed some pretty elevated base flows.
[8:06]
You can even see in uh when we had that
[8:07]
record October, we were really high,
[8:10]
kind of
[8:11]
seasonal highs. And um the the rain in
[8:15]
March also kind of had a nice long
[8:17]
gradual
[8:19]
um
[8:20]
sustained flow, but it's starting to
[8:21]
drop pretty quick.
[8:25]
And then lastly, the Goggin Drain, it's
[8:27]
kind of up in that normal condition.
[8:28]
This is basically I I've kind of changed
[8:31]
the operations of the Surplus Canal, so
[8:32]
that's why it is up a little higher
[8:34]
right now.
[8:35]
Um
[8:36]
but again, the Surplus is also kind of
[8:38]
flowing quite well, probably due to
[8:41]
low elevation rain that we've had, so.
[8:45]
Um here's some of the new breach flows,
[8:47]
so um we measure every month. Um there
[8:50]
was no measurements in October and
[8:51]
November due to the the government
[8:53]
furlough. Um our most recent
[8:55]
measurements here on December, January,
[8:58]
February, March, so you can see that
[9:00]
kind of came up in January. Flows have
[9:03]
been kind of just hovering around that
[9:05]
five six five 600 to 700 cfs.
[9:10]
If we look at the north to south flow,
[9:13]
um again, no measurements in October,
[9:15]
November, but we have very little flows
[9:18]
kind of
[9:19]
sneaking past that um
[9:23]
the breach there with the berm, so quite
[9:25]
low flows.
[9:29]
Um this is the the um
[9:32]
topography of the of the um the berm.
[9:35]
You can see that the low point from the
[9:38]
most recent survey has a an elevation of
[9:40]
4186
[9:42]
um and there's been some pretty
[9:43]
substantial erosion
[9:45]
um especially on that right side of the east side of the berm um
[9:51]
probably due to
[9:53]
my guess is having been out there quite
[9:55]
a bit wave action that kind of comes in
[9:57]
with the north wind events. So, it kind
[9:58]
of crashes in and kind of erodes that
[10:00]
berm.
[10:05]
Great Salt Lake at Lakeside. Um so, this
[10:07]
is the far western breach, the old
[10:09]
breach. Um
[10:12]
we have kind of some
[10:15]
we we we've been making discrete
[10:16]
measurements. Uh I'm going to talk a
[10:18]
little bit about some of the problems we
[10:20]
have at Lakeside, but most of the water
[10:22]
now is coming from the Newfoundland
[10:23]
basin and so, we had a pretty
[10:27]
wet March or beginning of March anyway
[10:29]
and we saw quite a bit of um elevated
[10:32]
flows. We measured 151 cfs going through
[10:35]
the Lakeside breach. So, that's north to
[10:36]
south flow and it's pretty much stayed
[10:40]
north to south flow due to the low
[10:42]
elevation of of um
[10:44]
the south arm of the Great Salt Lake.
[10:46]
So, just to kind of I I think I've
[10:48]
presented on this before like maybe a
[10:50]
year or two ago,
[10:51]
but um we get these pretty heavy precip
[10:54]
events that occur out in the
[10:55]
Newfoundland basin and then it kind of
[10:57]
goes across where those blue arrows are
[10:59]
pointing
[11:00]
and we get these large sediment
[11:02]
deposition events that actually occur in
[11:05]
our um in the Lakeside gauge pool and we
[11:08]
typically see these in the winter and
[11:10]
the fall when the lake elevation is
[11:12]
really low and you don't have the kind
[11:14]
of the south arm of to push that water
[11:16]
to the north.
[11:19]
Um
[11:20]
we'll see if these work, but this is
[11:22]
kind of the flows that we were observing
[11:24]
when we were out there
[11:26]
um
[11:27]
on March uh 9th.
[11:30]
Um this is all this water is coming from
[11:32]
the Newfoundland basin and then here's a
[11:35]
Let's see if it goes to the other one.
[11:37]
Yep.
[11:39]
Maybe.
[11:44]
And then this is so this is looking
[11:47]
south like southwest and it kind of
[11:50]
pulls in and then this is where it kind
[11:52]
of comes down this dike and all this
[11:54]
water eventually makes its way over to
[11:56]
the Lakeside gauge.
[11:59]
And oop.
[12:00]
Here we go. And so
[12:02]
it goes north across the railroad
[12:04]
causeway and then it has a tendency to
[12:06]
kind of dive
[12:08]
south again and the water
[12:10]
kind of splits. Some of that goes into
[12:12]
the north arm and some of it goes into
[12:13]
the south arm. Um, when it goes into the
[12:16]
south arm of the lake and past the the
[12:19]
Lakeside gauge it creates
[12:21]
it brings a lot of sediment and um,
[12:23]
we've had issues with this since 2016
[12:26]
when the lake got below 4193
[12:29]
and what that does is from a gauging
[12:31]
standpoint is it deposits all the
[12:34]
sediment and it seems like we've also
[12:36]
now started to collect a bunch of
[12:37]
tumbleweeds and so this is a problem for
[12:41]
us because our I think I oop.
[12:46]
Our um,
[12:47]
velocity sensor there's a little pole
[12:50]
kind of on the bottom of the screen where you can see the pole
[12:53]
sticking out. Our sensor goes just a
[12:56]
little bit more
[12:59]
streamward of that point right in the
[13:01]
middle of those where all those um, kind
[13:03]
of right here.
[13:05]
And now you can see this is like full of
[13:07]
tumbleweeds and it's full of about 2 ft
[13:10]
of sediment and so we're unable to put
[13:12]
our velocity sensor in there to actually
[13:14]
measure flow in a real-time aspect. Um,
[13:19]
due to the low lake levels I think we're
[13:21]
going to see very little scour as the
[13:23]
north I don't think the north arm is or
[13:24]
the south arm is going to get above 4193
[13:26]
where we typically see those flows that
[13:28]
scour that sediment out. So, this could
[13:31]
be a problem for gauging um at the
[13:34]
Lakeside gauge for USGS with this these this sediment there.
[13:40]
Um one of the things that I I believe
[13:42]
maybe Jeff mentioned this at a previous
[13:44]
meeting is we've talked about solutions
[13:46]
of how we can maybe try to improve this this condition.
[13:50]
Um you know, possibly a a a jetty that
[13:53]
would push the water all to the north
[13:55]
arm of the Great Salt Lake. This would
[13:56]
reduce the the sedimentation in the
[13:59]
Lakeside gauge
[14:01]
um and then we could easily
[14:03]
report accurate flow um
[14:06]
south to north. Um but that is a water
[14:10]
source that is you know, then just
[14:12]
pushed to the to the north the north arm
[14:13]
of the Great Salt Lake rather than the
[14:14]
south. Um
[14:17]
but it would improve our gauging
[14:19]
operations.
[14:20]
Uh
[14:22]
if people are interested in the the
[14:24]
Newfoundland basin and how much water
[14:25]
that's contributing, um I think that
[14:28]
there could be a potential gauging
[14:29]
location
[14:31]
um kind of right there on the south side
[14:33]
of the causeway at that pinch point. And
[14:36]
um we could measure the flow, but it
[14:39]
this would be if the jetty was put in
[14:41]
place, then it would all go to the like
[14:42]
kind of the north arm rather than the
[14:43]
south arm. But um
[14:46]
it just kind of
[14:48]
looking for solutions to improve the
[14:50]
gauging at the Lakeside gauge and maybe
[14:52]
somehow quantify flow coming in from the
[14:55]
Newfoundland basin, um but I guess
[14:57]
having talked to Christine and Ryan in
[14:59]
the past, they wanted to bring kind of
[15:01]
this issue back to this group and and
[15:03]
have people start thinking about it as
[15:05]
far as what we can do as far as
[15:06]
quantifying the source of water.
[15:09]
Cuz essentially we can't we
[15:11]
right now we don't have continuous
[15:12]
discharge at Lakeside. Correct.
[15:15]
>> export of you know, whatever goes to
[15:16]
Lakeside breach, we really can't
[15:18]
quantify that at this time. Do we Do you
[15:20]
what the salinity is of that water? It's
[15:22]
similar to
[15:23]
Could you please repeat that with the
[15:25]
microphone for those online?
[15:32]
Um I Okay, I'll repeat what I said,
[15:34]
which is basically we don't have
[15:35]
continuous measurements of discharge at
[15:37]
the Lakeside breach, so we can't
[15:39]
quantify any exchange occurring there
[15:41]
from south to north or that's really
[15:43]
coming from the Newfoundland basin other
[15:45]
than these discrete measurements. And
[15:46]
then the question was what's the
[15:47]
salinity of that water um from north to
[15:50]
south from the Newfoundland basin. And
[15:52]
did you Did you measure the density? I
[15:54]
kind of forget what We did measure it. I
[15:56]
can look it up, Thomas. We did collect a
[15:57]
sample
[15:59]
and we recently collected like a full
[16:00]
sample for analysis. I We can get back
[16:02]
to you on that. We We should be able to
[16:04]
figure that out. Um and in the past
[16:06]
we've measured, I think it was that did
[16:07]
that time we were out, it was like
[16:09]
around I think 80,000 microsiemens per
[16:11]
centimeter, so that's like half of what
[16:13]
the South Arm would be in terms of
[16:14]
salinity. But we're quantifying the
[16:16]
chemistry of it um as well as the
[16:18]
salinity, so. From a mineral standpoint
[16:21]
historically,
[16:22]
that water looks a lot like South Arm.
[16:24]
Right. Yeah, okay. Uh cuz you're getting
[16:27]
uh daylight of of shallow ground water.
[16:30]
Um
[16:30]
>> Um that
[16:31]
it kind of runs up against the other the causeway um essentially and then it daylights in that in that trench.
[16:39]
Okay.
[16:40]
Good to know.
[16:41]
The Just to point out that the plot on
[16:44]
the screen, the green is actually
[16:47]
measured um
[16:49]
measured discharge in a continuous
[16:51]
standpoint, so we're measuring every 15
[16:53]
minutes using a velocity sensor. The the
[16:55]
red is actually just estimated flow
[16:59]
based off of our discrete measurements
[17:01]
that we make and kind of looking at the water level at the Lakeside gauge,
[17:06]
but the reason the data is estimated is
[17:08]
because we can't put that velocity
[17:10]
sensor in because of the sedimentation
[17:12]
problem.
[17:13]
Um we have left it in in the past. It
[17:15]
was buried by 3 ft of sediment and it
[17:17]
took it over a year to daylight.
[17:20]
Um so, what we've been doing in a
[17:23]
similar to this condition in 2025 is we
[17:26]
pull it out so it doesn't get buried,
[17:28]
and then we wait for the lake to come
[17:29]
up. And when the lake gets comes up to
[17:31]
4193, we then
[17:33]
basically put our sensor out on kind of
[17:35]
a floating
[17:37]
system that kind of rides the sediment
[17:39]
as it as it scours. So, that's kind of
[17:41]
how we've been doing it in the past.
[17:43]
That has seemed to work well. We haven't
[17:44]
lost our instrumentation,
[17:46]
but um it does provide a discrete kind
[17:49]
of estimated unreliable record.
[17:52]
So,
[17:53]
Mike, um
[17:54]
when you were doing this, I mean,
[17:56]
obviously, you had some maps up there
[17:57]
that kind of was showing where this is
[17:59]
coming from.
[17:59]
>> Mhm. Um
[18:01]
it's my understanding that there's some
[18:03]
uh
[18:04]
topographic features that are kind of
[18:06]
prohibiting water from necessarily
[18:08]
flowing from the entire basin uh back to
[18:10]
the lake. Is some of this groundwater
[18:13]
that's coming back in um to those low
[18:15]
spots? Cuz it kind of looked like it was
[18:16]
like, you know, in the canal there. Do
[18:19]
you have any thoughts on
[18:21]
Are you looking at um
[18:25]
this one? Is this the one you're kind of
[18:26]
talking about? Yep. Cuz every that there
[18:29]
is like that's everything to the north
[18:30]
of the train tracks, right? Right.
[18:32]
So, it's north of the train
[18:33]
tracks, but it kind of comes down. You
[18:35]
can see the arrows are kind of pointing,
[18:36]
and then it fans out. There's almost
[18:38]
like a delta there that some of the
[18:40]
water goes to the north, but the low
[18:42]
point is actually south where most of
[18:45]
the water does go.
[18:46]
>> we uh we had done a
[18:49]
uh a study internally with uh UGS helped
[18:52]
out with some ET data, and they'd
[18:54]
estimated that there could be upwards of
[18:56]
60,000 acre-feet evaporating out of the
[18:58]
basin each year. And so, there's uh this
[19:01]
60,000 acre-feet that could be uh
[19:03]
evaporating. That that would be on like
[19:05]
a a bigger year. There's, you know,
[19:07]
small years it could be, you know,
[19:08]
10,000 acre-feet. I If anybody's
[19:10]
interested, we can send you the um up
[19:12]
the Utah State Water Research Lab did
[19:15]
the study and then Mark Hadwin
[19:18]
right is that the right name? Mark
[19:20]
Hadwin, okay. Thank you.
[19:21]
Ran the ET data, but anyway, the idea is
[19:23]
that there may be some way to influence
[19:26]
the flows to
[19:28]
you know, get it to the lake rather than
[19:30]
let it just simply evaporate with maybe
[19:33]
little to no harm to the you know, to
[19:36]
the basin. I mean, I think there's other
[19:37]
things we need to think about like
[19:39]
scouring of salts and whether there's
[19:41]
any wildlife that uses that, but I think
[19:43]
the initial glance is that there's
[19:45]
likely not a lot prohibiting us from
[19:47]
doing something like that and getting a
[19:48]
real return on that water.
[19:51]
But one thing that folks have talked
[19:53]
about is you know, that
[19:55]
perhaps some of that is infiltrating
[19:56]
into the ground. I'm just curious if you
[19:58]
think any of this could be connected to
[20:00]
groundwater movement that is helping
[20:02]
with those flows or if that's all
[20:03]
surface runoff just from the north side
[20:05]
of the tracks. I think we'll see some of
[20:07]
the groundwater this time of year when or
[20:11]
earlier I guess maybe more in the winter
[20:13]
we'll see some some flows coming in, but
[20:15]
generally we see the biggest flows after
[20:17]
big rain events and
[20:19]
in 2017 there was a rain on snow event
[20:21]
that actually
[20:23]
I think the railroad had quite a bit of
[20:24]
damage to the Lucin
[20:27]
bridge and I think we had that was our
[20:30]
biggest deposition event and so kind of
[20:32]
rain rain on snow is generally what I've
[20:35]
observed when I've been out there, but
[20:36]
I'm sure there is groundwater that's
[20:37]
coming in especially now. I mean, it's
[20:40]
been really dry and we haven't had a lot
[20:42]
of rain, but I think it's probably still
[20:44]
slowly making it through the system.
[20:46]
It'd be really interesting. I think one
[20:48]
of the thoughts that we had
[20:50]
you know, on the return into the lake if
[20:52]
we were ever to complete a project like
[20:54]
this is that there could be some type of
[20:56]
control structure that could be involved
[20:58]
where we could
[20:59]
either choose to send it to the South
[21:01]
Arm or the North Arm depending on what
[21:03]
our goals are with salinity and lake
[21:05]
levels and you know, everything else. I
[21:07]
think we could achieve different
[21:08]
management objectives, but I think it'd
[21:10]
be really interesting to get a
[21:12]
like you said you're doing, but get the
[21:14]
results of that characterization of the
[21:16]
chemistry of that water, so we could
[21:18]
kind of understand what opportunities
[21:20]
exist.
[21:22]
I think most of the sediment is coming
[21:24]
kind of right north of the lakeside um
[21:28]
bridge. It seems like it kind of comes
[21:30]
through an old canal and then it hits
[21:32]
that playa and I feel like that's where
[21:36]
it's picking up most of the the
[21:37]
sediment. You have a lot of kind of
[21:40]
loose
[21:41]
oolitic sands that are available that
[21:44]
are on the surface in that area.
[21:46]
It's probably that.
[21:48]
There is a bunch of clay on the delta in
[21:50]
front too.
[21:52]
Oh.
[21:53]
Okay.
[21:55]
All right.
[21:56]
That's your findings, so
[21:58]
Okay.
[22:00]
Anyway, I
[22:02]
it's it has presented quite a challenge
[22:04]
for the the gauge there, so just so
[22:06]
people are aware.
[22:11]
Any other thoughts on that stuff or I'll
[22:13]
move on to salinity?
[22:16]
Okay, let's move on.
[22:17]
Um okay. Thinking about salinity in the
[22:20]
South Arm, here's the plot of salinity
[22:23]
from about the fall of 2022 our high
[22:25]
salinity condition to present. Uh our
[22:28]
most recent salinities were measured on
[22:30]
March 4th and they ranged from 112 g per
[22:33]
liter to 118 g per liter at the surface.
[22:36]
Our site 2267, which is really close to
[22:38]
the bear north of Fremont Island, is our
[22:40]
freshest as we usually see.
[22:42]
And we are seeing some a little bit of
[22:44]
um heterogeneity in the water column
[22:46]
where it our site in Carrington Bay and
[22:48]
this 2267 we're seeing fresher
[22:50]
conditions at half a meter below surface
[22:52]
as
[22:53]
uh relative to our measurements at 3 m
[22:55]
deep or at
[22:56]
2 to 3 m deep.
[22:58]
And this plot just uh illustrates, you
[23:01]
know, how we've been on a gradual
[23:02]
decline relative to this time last year
[23:05]
we're anywhere from 5 to 10 g per liter
[23:07]
higher, so a little bit higher than we
[23:09]
were last spring. And as Mike said, uh
[23:12]
we may have peaked in the South Arm, so
[23:13]
these may be approximately the the
[23:15]
spring low salinities we observe.
[23:19]
Relative to last fall um in Carrington
[23:21]
or sorry, yeah, in Carrington Bay at our
[23:23]
site 2565 we are 13 g per liter fresher
[23:26]
and at from relative to our site in uh
[23:29]
Gil Gilbert Bay 3510 we're 8 g per liter
[23:32]
fresher than we were last fall. So just
[23:34]
to give you an idea of the the change
[23:35]
we've seen seasonally. In the context of
[23:38]
our historical record back to 2010, you
[23:41]
can see we're, you know, really hovering
[23:43]
around this 120 the low range of the low
[23:45]
end of our 120 to 160 g per liter um
[23:48]
kind of optimal range that's been
[23:50]
identified. These conditions are similar
[23:52]
to what we've seen in 2020, 2013, so um
[23:55]
you know, it's a
[23:57]
you know,
[23:59]
we've seen it before.
[24:01]
Uh other recent salinities we've
[24:02]
measured uh outside of the South Arm are
[24:04]
at the new breach, so well it's still
[24:06]
the South Arm, but 118 g per liter.
[24:09]
And then at Saltair we have a
[24:10]
measurement as recent as last week on
[24:12]
the March 26th that was 117 g per liter.
[24:15]
So that's where we're sitting right now.
[24:18]
Um I've started computing our volume
[24:20]
weighted salinities uh at the request of
[24:23]
Jeff, so on the left looking at our what
[24:25]
we call the upper brine layer volume
[24:27]
weighted salinity. This is considering
[24:29]
the top 4 m of the South Arm uh both in
[24:32]
Carrington Bay and Gilbert Bay. That uh
[24:35]
value is 118 g per liter. And then if we
[24:38]
consider the full depth volume weighted,
[24:40]
which goes to the bottom of the lake
[24:42]
bottom bottom of the bottom of the South
[24:43]
Arm, we're looking at 119 g per liter.
[24:46]
Very similar as we're not seeing a lot
[24:47]
of variability in the water column.
[24:51]
Um looking at these values in the
[24:52]
context of our salt mass as well as our
[24:55]
elevation, um that kind of line is
[24:57]
pointing to our most recent measurement
[25:00]
and uh the mass we have at the at that
[25:03]
time was an estimated 874
[25:06]
million tons. So, again, we're kind of
[25:08]
at this uh that low end of the 120 to
[25:10]
160 g per liter range and um not as low
[25:14]
in terms of elevation as we've seen
[25:15]
before, but it sort of at the low low
[25:17]
end.
[25:19]
And then our salt mass, so this plot
[25:21]
shows salt mass South Arm salt mass in
[25:23]
millions of tons on the Y axis from the
[25:25]
time of our
[25:27]
uh historic low fall of 2022 to present
[25:30]
and you can kind of see we were hovering
[25:32]
around about a billion metric tons of
[25:33]
salt during that time during the fall of
[25:35]
2022 after berm modifications that
[25:38]
really set us up into uh kind of an
[25:40]
export paradigm where we were losing 134
[25:43]
million tons per year
[25:45]
up until the point we started to see
[25:47]
backwater effects at the breach that was
[25:49]
observed by um Andy Carlson back August
[25:52]
September of 2024. Since that time we've
[25:54]
really kind of seen a step change in the
[25:57]
rate of loss of salts and uh more
[25:59]
recently like last year maybe last year
[26:01]
and a half we've seen the declines in
[26:03]
the South Arm of about 28 million tons
[26:05]
per year.
[26:08]
And I'll leave it there until we get to
[26:10]
the kind of spring forecast
[26:13]
section unless anyone has any questions.
[26:20]
Any So, no questions?
[26:25]
All right. Heard a click. Bill.
[26:29]
Yeah, just
[26:30]
Christine, could you go back to that
[26:32]
plot showing the lake elevation and
[26:33]
salinity data?
[26:38]
Yes.
[26:39]
Once I don't know why this is so difficult
[26:42]
for me. Appreciate your patience.
[26:44]
Sh- sharing.
[26:46]
Okay. Hang on, Bill.
[26:51]
Okay, this one?
[26:55]
The one that actually shows the lake
[26:56]
elevation time series um with the
[26:59]
salinity values in the time series. Ah,
[27:01]
okay. I think a couple before that.
[27:04]
Yeah. The back to 2010 or back to last
[27:07]
year? Okay, you got it. There you go.
[27:10]
Yeah, the one with the most recent. Um
[27:13]
So,
[27:14]
our lake elevation isn't so so bad
[27:18]
now.
[27:21]
And I'm just trying to understand
[27:24]
whether we as a group
[27:26]
can explain that,
[27:29]
you know, given the the climate aspect.
[27:33]
Is it
[27:34]
most
[27:36]
What can we attribute this to? How much
[27:38]
of this is due, I guess,
[27:40]
Do we have a sense of how much of this
[27:41]
is due to the negotiated water returns
[27:44]
that have been coming through Farmington
[27:45]
Bay?
[27:48]
Has anybody kind of done that analysis?
[27:54]
You're Just to clarify, you're talking
[27:55]
about the water level?
[27:58]
Yeah.
[28:01]
Uh Bill, we haven't. USGS has not looked
[28:03]
at that. No.
[28:07]
Cuz you know, we haven't had great
[28:09]
runoff.
[28:12]
And yet we're not sitting too badly,
[28:14]
relatively speaking.
[28:16]
And I just would like to have a sense of
[28:17]
whether or not
[28:20]
what the magnitude of those negotiated
[28:23]
returns are
[28:25]
in that.
[28:27]
And it's okay if nobody has that sense.
[28:28]
I just That's something I think we
[28:30]
should get a handle on, but I'm not
[28:32]
quite sure how to do that. Um
[28:34]
but uh I just wanted to check and see if
[28:36]
anybody had that on the top top of their
[28:38]
head.
[28:39]
It sounds like we don't at this point.
[28:41]
Th- This is Joe. I I I think that the
[28:43]
trust is is working to quantify
[28:46]
um you know, what's what's
[28:48]
been delivered
[28:51]
certainly you have you know what was
[28:52]
negotiated on on paper but you know the
[28:54]
actual measurements
[28:56]
to follow through with that
[28:58]
I do believe the trust in Marcel are
[29:00]
working on something like that.
[29:03]
Okay. All right, great. I just I just
[29:05]
wanted to
[29:06]
get a sense of that. Thank you.
[29:07]
All right, Bill and then this is Kyle
[29:08]
and then just another kind of anecdotal
[29:12]
accessory to this is we noticed water
[29:16]
temperature in the lake especially in
[29:17]
the South arm all of last summer was
[29:20]
kind of on the lower end than what we
[29:22]
would expect from our 30-year data set.
[29:25]
So I'm wondering if this has something
[29:27]
to do with that high runoff of 2023 and
[29:30]
then not losing it as quickly as we
[29:32]
would expect and so that's you know kind
[29:35]
of a saving grace that just for some
[29:37]
reason we weren't as hot this last
[29:40]
summer and so we're holding on to some
[29:42]
of that water that we were given in the
[29:44]
big runoff here.
[29:46]
So another thread to pull on for
[29:48]
somebody who wants to look at all this.
[29:50]
Never heard that one before Kyle. I like
[29:52]
that.
[29:53]
There's also for your information Bill
[29:56]
there's water rights has a accounting
[29:59]
tool on their distribution plan that
[30:02]
talks about
[30:03]
what the saved water or I guess
[30:06]
dedicated water on approved change
[30:08]
application
[30:09]
applications accounts for so you can
[30:11]
look at there and they have already done
[30:12]
this quantification. It doesn't get to
[30:14]
what you know Joe was talking about
[30:16]
which is
[30:17]
you know what water could have been
[30:18]
going there already versus new water but
[30:21]
it does give a little bit of an insight.
[30:28]
Great.
[30:29]
I I appreciate your optimism
[30:32]
and what you're seeing there.
[30:34]
I am
[30:36]
so last month's agenda we had
[30:39]
asked Jordan Clayton from NRCS to come
[30:42]
and give us a presentation.
[30:44]
Um and
[30:46]
I asked him specifically if he could
[30:47]
talk about how NRCS does their
[30:49]
forecasting. Um
[30:51]
and you know, what's their methodology
[30:53]
in developing
[30:55]
um an an estimate or forecast of what
[30:58]
the spring runoff would be and what the
[30:59]
inflows to the lake and then how does he
[31:02]
how has he been getting to that his
[31:04]
forecast for the lake level um for the
[31:06]
summer.
[31:08]
And so he um unfortunately we had to
[31:11]
postpone our meeting and but we um but
[31:15]
he did send and then he couldn't make it
[31:17]
today. Um
[31:18]
his his final for forecast is comes out
[31:24]
first, I guess that's on the on
[31:26]
Wednesday. Um and so he's really busy
[31:29]
getting that done and finishing up with
[31:31]
some field work for that. So he wasn't
[31:33]
able to come, but I wanted to I thought
[31:35]
it was well worth highlighting some of his slides
[31:40]
um for you.
[31:43]
And so this is you know, just to preface
[31:45]
this, this is all Jordan's information.
[31:48]
Um but I thought I think there are is
[31:50]
some, you know, as we're looking at how
[31:52]
we forecast salinity for the year, I
[31:54]
thought this is some good background.
[31:57]
Because so much of this comes down to
[31:59]
how much water do we expect, um how high
[32:01]
do we expect the lake to come up this
[32:03]
year. Um and then that drives how we
[32:06]
think salinity salt might move through
[32:08]
the breach and um and the mass that we
[32:12]
have to work with.
[32:14]
So he had quite a few slides and I'm
[32:16]
going to um skip through a lot of them,
[32:19]
but um just in in terms of his
[32:23]
you know, just providing an overview, we
[32:26]
know the watershed is is large and I
[32:28]
think um I think what is impressive is
[32:31]
the number of snow tel sites and snow
[32:33]
courses that they monitor throughout the
[32:36]
basin.
[32:37]
Um so it's SNOTEL sites measuring the
[32:40]
meteorological information, how much
[32:42]
snow is falling. The snow courses where
[32:44]
they go up on snowmobiles um up to the
[32:47]
site and they're actually measuring um
[32:50]
the depth of the snow.
[32:52]
And so they've got um they feel like a a
[32:55]
really good representation
[32:57]
um across the basin looking at um as you
[33:01]
know high as well as medium elevation
[33:03]
sites, low elevation sites uh really to
[33:06]
help um forecast what the inflows or
[33:09]
what the available water supply is. And
[33:12]
this isn't just used and just recently
[33:14]
we've been using this to look at
[33:16]
forecasting the the lake level, but this
[33:19]
is the data set that's that water
[33:21]
suppliers are using and they plan most
[33:24]
of their reservoir operations on on
[33:26]
these types of forecasts.
[33:30]
So um here you can just see a
[33:33]
distribution of the of the SNOTEL sites
[33:35]
and stream gauging sites um all done in
[33:39]
cooperation with USGS.
[33:42]
Um
[33:43]
you know, in terms of um you know,
[33:46]
inflows where they've got measurements
[33:48]
um and then
[33:50]
uh there you can see the rep the areas
[33:53]
that are represented by their sites in
[33:55]
red.
[33:56]
Uh so in a lot of our mountain areas
[33:58]
they've got really good coverage
[34:00]
um for precipitation data, same same
[34:03]
type of thing. Really for trying to
[34:05]
forecast because our system is snow um
[34:09]
snowmelt dominated um they're really
[34:11]
focusing on trying to understand what
[34:13]
what's happening at those higher
[34:14]
elevations that hold our snow. This I
[34:17]
thought this graph was was interesting
[34:20]
just showing the distribution of where
[34:22]
they have SNOTEL sites um at different
[34:24]
elevations. So you can see with the the
[34:26]
blue curve that's that's what I what I'm
[34:29]
referencing. All those triangles
[34:31]
represent their sites that they're
[34:33]
measuring. So we're not just measuring at high
[34:36]
elevations. We've we've got SNOTEL sites
[34:39]
throughout
[34:40]
all of the elevations.
[34:45]
Let's see. I touched on this. Um
[34:48]
you know, one thing he noted was that
[34:50]
most of the precipitation falls between
[34:52]
7,000 and 9,000 ft. And and they really
[34:56]
don't feel like we're missing uh too
[34:58]
much information there. We can always
[35:00]
have more gauges, but for the most part
[35:02]
we've covered it.
[35:03]
Um current conditions, I think we all
[35:06]
know are not good. Um
[35:09]
Let's see. Comparison to
[35:12]
I did take the liberty to add that
[35:14]
straight line in there. Um that was just
[35:17]
from
[35:18]
So what you see the dash lines, so he
[35:20]
was going to present this on February
[35:22]
26th. So his forecast then were based on
[35:25]
the information they had on February
[35:26]
1st. And um and so
[35:30]
you can go on to their website today,
[35:32]
and that's what I did this morning, and
[35:34]
you can get their current, you know,
[35:36]
where are we today based on SNOTEL data.
[35:39]
Um all of those dash lines you see there
[35:41]
are are forecasts or projections that
[35:44]
they can make um based on where we were
[35:46]
on February 26th. And you can see the
[35:49]
bottom one there is the minimum
[35:51]
projection, um which is even lower than
[35:54]
the 10% projection. Um and that black
[35:57]
line you see going from upper left to
[35:59]
lower right, um there, this is where we
[36:03]
are
[36:04]
um today um in terms of our snow water
[36:08]
or
[36:09]
snow water equivalent measurements on um
[36:12]
at this um SNOTEL sites throughout the
[36:15]
basin. So a lot can change between these
[36:19]
forecasts. Um that was this is data
[36:21]
based on February 1st. Uh we should be
[36:24]
getting another update uh forecasts on
[36:27]
April 1st.
[36:29]
So, they're
[36:31]
constantly updating, trying to figure
[36:33]
out what's happening in in the basin.
[36:36]
I'm going to jump through a lot of
[36:37]
these. Um I think from a precipitation
[36:40]
standpoint, um at couple weeks ago at
[36:44]
the Utah Water Users Conference, uh
[36:46]
Jordan gave a presentation and just
[36:48]
noted that overall our precipitation's
[36:50]
been pretty normal. Um what's different
[36:53]
is just the temperature paradigm that
[36:55]
we've been in where we just haven't seen
[36:57]
the snow accumulation and and now
[36:59]
especially we're seeing the snow melt
[37:01]
happening very quickly.
[37:04]
Um soil moisture has been above normal.
[37:08]
Um and I and and I believe what Jordan
[37:11]
had explained is just with more more
[37:13]
precipitation coming as rain, that's
[37:15]
really helped our soil moisture
[37:17]
um in in the watershed. But without the
[37:20]
snow, you know, typically a higher snow
[37:23]
or soil moisture helps with runoff
[37:25]
efficiency, meaning that more of that
[37:27]
snow comes into our streams and down to
[37:29]
the lake.
[37:30]
Um but without the snow, it's it's not
[37:34]
helping our our over overall supply.
[37:38]
Um I think our air temperatures have
[37:41]
been above normal.
[37:43]
Um reservoirs are filling with what available snow we
[37:49]
do have. Um but we're below where we
[37:53]
were last year.
[37:55]
Um so, you can see here as of February
[37:56]
1st, we're 68% capacity compared to 80%
[37:59]
the the previous year.
[38:02]
Um
[38:04]
Let's see. So, in terms of of Great Salt
[38:06]
Lake inflow and lake level rise
[38:08]
forecast,
[38:10]
um they are using these four primary
[38:12]
gauges, USGS gauges. And um
[38:17]
and what they're doing is they're taking
[38:18]
the they're estimating their the runoff volume um and and then
[38:25]
looking at where we are today or at the
[38:27]
particular day in the lake and then
[38:29]
they're adding that volume to that to to
[38:31]
understand what's what's going to happen
[38:33]
to what the water level.
[38:34]
So that part I think is fairly
[38:37]
straightforward. I think a lot of the
[38:38]
magic happens in in forecasting how
[38:41]
runoff how the snow's going to melt and
[38:44]
how that's going to translate into um
[38:46]
flow coming to the lake.
[38:49]
So they've got um a lot of data um from
[38:52]
prior years. I think one of the key
[38:54]
challenges that they have is that every
[38:56]
year is different. Um they highlighted in
[39:00]
2023 we had the all-time highest
[39:04]
snowpack or snow water
[39:06]
um equivalent SWE. Um and then this year
[39:10]
we have the all-time low. So in just the
[39:12]
span of 3 years we've swung from an
[39:14]
all-time high to an all-time low.
[39:16]
So that obviously it gives it adds to
[39:20]
the data set um but when we're operating
[39:23]
on the extremes it's really hard for
[39:25]
them to predict um what's going to
[39:28]
happen.
[39:30]
So they they've got a number of
[39:32]
processes that they um that they're
[39:35]
using with their with their forecast
[39:37]
modeling system. Uh they're using
[39:39]
machine learning to constantly try to
[39:41]
recalibrate the model to try to
[39:43]
understand what's happening um and
[39:46]
really starting to work towards and
[39:48]
they've got a number of methods that
[39:49]
they use to to work towards using an
[39:51]
ensemble or an average from those
[39:54]
different um forecasts and then
[39:57]
reporting those values.
[39:59]
Um if you haven't been to their website
[40:02]
it's amazing the information that that
[40:04]
you have available um to look at. Um
[40:09]
let's see.
[40:11]
So they're combining what their modeling
[40:13]
forecasts are but then they're also
[40:14]
looking at um just doing some hand
[40:17]
calculations, looking at um
[40:21]
you know, what's the 50th um percentile
[40:23]
exceedance value that they have and then
[40:26]
adding and you can see here they in this case he looked at the February
[40:31]
1st lake elevation uh what the volume of
[40:34]
the water was in the lake at that time.
[40:36]
And one note is they don't account for
[40:38]
the berm. Um they're assuming that the
[40:41]
lake is at one level.
[40:44]
And um but then they look at what's the lake level associated with the new
[40:49]
volume accounting for the inflow
[40:51]
forecast. And I think this is I
[40:54]
and I think um Bill
[40:56]
I think there is something to what you
[40:58]
were observing because on February 1st
[41:01]
the inflow forecast was only 290,000
[41:04]
acre feet. Um which is horrible when you
[41:08]
look at what we've typically see.
[41:11]
Um and so by when they added that the forecast for the lake um we would
[41:17]
all
[41:18]
um would have been
[41:20]
um
[41:21]
I think 4192.2.
[41:24]
Um
[41:25]
so on the website here and please stop
[41:29]
me if you have questions. I'm blasting
[41:31]
through this pretty quick. Um but
[41:33]
typically what they're looking at is the
[41:35]
in in um there's all kinds of these
[41:38]
charts. You can look at every stream and
[41:40]
see what their forecasts are.
[41:42]
Um but then what they've done in the
[41:43]
last 5 years is is they've added those
[41:46]
all together to come up with the Great
[41:47]
Salt Lake inflow.
[41:49]
The number that I think is most useful
[41:51]
is um
[41:52]
in in the green right in the middle
[41:54]
there 290,000
[41:56]
acre feet of inflow.
[41:59]
Um and then you can see the range that's
[42:02]
the potential range um and it's a it's a
[42:05]
very wide range.
[42:06]
But it gives you kind of an idea of the uncertainty that's there.
[42:12]
So when when he added that, I guess
[42:14]
let's see
[42:15]
I was wrong. The based on the February
[42:17]
1st forecast, the the prediction was
[42:21]
um
[42:22]
Let's see, lake level rise.
[42:25]
So, it it was 4190 um 191.8
[42:30]
on February 1st. As of March 1st, which
[42:33]
is what he's using here,
[42:35]
um it was 4192.4.
[42:37]
And what he reported at Utah water users
[42:40]
2 weeks ago was that 4192.5.
[42:44]
Um
[42:45]
And so, one of the reasons that's that
[42:47]
it's coming up here
[42:49]
is just
[42:51]
um
[42:52]
Let's see.
[42:54]
And I'll I'll email this these slides to
[42:57]
you so you can peruse them.
[43:00]
Um but the the latest forecast that they
[43:03]
have is that we'll have a um
[43:05]
uh inflow about 325,000 acre feet. Um
[43:09]
so, it's it's been coming up since over
[43:12]
the last couple months.
[43:13]
Um but one I think this slide is
[43:15]
important in just noting that this does
[43:17]
not account for management actions. So,
[43:20]
on a on a poor year, I think
[43:24]
historically, um water managers if if
[43:27]
their reservoirs are low, they're going
[43:28]
to store as much as they can to to get
[43:30]
those reservoirs up to where they can get. Um if if they're already starting out
[43:36]
pretty full, then that they may actually
[43:37]
dump water um
[43:39]
at point to make room for a spring
[43:41]
runoff. So, there's a lot of interplay
[43:44]
there with um with water managers. And
[43:48]
um
[43:50]
And you know, he notes here is lower
[43:52]
than typical percent of variability is
[43:54]
explained by the runoff models. There's
[43:56]
poor correlation.
[43:58]
Um but a lot of that is just due to a
[44:00]
lot of the decisions water management
[44:02]
decisions that are happening in the
[44:03]
watershed. And so, we can try to
[44:06]
calibrate models to USGS gauge data, Uh
[44:10]
but just depending on what the needs
[44:12]
are, those you know, water managers can
[44:14]
change their reservoir operations to
[44:16]
meet their needs and and then that can
[44:18]
throw off our calibrations
[44:21]
because it's not based on natural
[44:23]
processes anymore. It's it's now we're
[44:26]
trying to have we're having to
[44:27]
incorporate
[44:29]
management decisions as well. So that adds a lot to the uncertainty here.
[44:35]
Um and then they don't account for
[44:36]
evaporate evaporative losses
[44:39]
um and really trying to just focus on
[44:42]
the 50th percentile
[44:44]
um
[44:45]
when they're doing this.
[44:47]
Let's see.
[44:48]
Um
[44:52]
So generally, you know, they're
[44:53]
typically 75 to 80% accurate and I think
[44:58]
a few years ago they they nailed the the
[45:01]
lake level prediction and last year they
[45:03]
were off a bit. Um but I think when when
[45:06]
you consider the uncertainty that there
[45:09]
is across the the board here,
[45:12]
what they're doing is pretty remarkable.
[45:15]
Um
[45:17]
And so they're they're constantly
[45:18]
working to try to make improvements. So
[45:21]
here that's where the machine learning
[45:24]
is a big thing that they're investing
[45:26]
into to try to incorporate a lot more
[45:29]
parameters into it to try to understand
[45:31]
what's really driving these systems.
[45:34]
The longer the period, the better
[45:35]
statistical representation that they can
[45:37]
get. They've been adding new SNOTEL
[45:40]
sites and and really trying to
[45:42]
incorporate more parameters. So I think
[45:45]
soil moisture is something that's
[45:48]
um
[45:49]
been I guess when I think about even my
[45:51]
career relatively recent
[45:54]
addition into the forecasting
[45:57]
that I think has made a big improvement
[45:59]
in and their accuracy.
[46:02]
But there's a lot more that they're that
[46:03]
they're working on. And you can see
[46:05]
here, I mean even dust impacts on the
[46:07]
snow can affect how the snow
[46:10]
melts. And those aren't things that we
[46:12]
have in our in our snow melt models.
[46:15]
Um
[46:15]
so there's a lot of things that are
[46:17]
moving here.
[46:22]
So I think that is the gist of it. Um so
[46:26]
there's there's about 50 slides here. So
[46:28]
I'll I'll forward that this to you all
[46:30]
and you can look through them. Um and
[46:33]
Jordan's certainly open to answering
[46:34]
questions. Um he but apologized for not
[46:37]
being able to be here today. So
[46:40]
I guess any questions
[46:42]
that I
[46:43]
almost hesitate to try to answer.
[46:47]
I have an elementary question. Mhm.
[46:49]
325,000
[46:52]
estimate
[46:54]
for a year.
[46:56]
That's for spring runoff. That's for
[46:58]
spring runoff. Yeah.
[47:00]
Um
[47:02]
And what
[47:03]
Could we have that repeated for those
[47:05]
online?
[47:06]
Oh, can you I'm sorry.
[47:10]
I'm asking about the period for the 325,000 acre foot
[47:15]
inflow. Yeah. So that'll cover what
[47:18]
January to July. July, okay.
[47:21]
Yeah.
[47:23]
So you can go to his their website and
[47:26]
um
[47:29]
Let's see.
[47:30]
How did I get the answer here before? Um
[47:47]
Oh, shoot. It's not coming.
[47:52]
But um Oh, this is all the stream flows.
[47:54]
Um
[47:55]
but
[47:56]
this is where you can come to um
[48:00]
to their website and you can get those
[48:02]
graphs to find out exactly what their update is.
[48:06]
Um,
[48:08]
Oh,
[48:09]
I just had to scroll down. So, here's
[48:11]
Great Salt Lake inflow. There's the 325
[48:14]
value.
[48:15]
Um,
[48:16]
and then you can go through that's April
[48:18]
to July is the forecast period.
[48:21]
Um,
[48:22]
and then you can go through every one of
[48:26]
their gauges in the system
[48:28]
to see what that means. Um, or how they
[48:31]
get to that.
[48:35]
But, when you consider 325,000
[48:37]
acre-feet, that's you know, I think an
[48:40]
average year was used to be 1 million.
[48:44]
Um,
[48:45]
you know, acre-feet, so it's not good. Um,
[48:51]
and it's a really low year. Um,
[48:53]
that said, I think you know, Bill, that
[48:56]
the fact that we're getting more flow
[48:57]
through the the Jordan River system
[49:00]
um, is is a is a good note. Um, you
[49:03]
know, is that because they are
[49:06]
um, transferring some of those water
[49:07]
supplies?
[49:09]
Um, I don't
[49:11]
I just drove past the Jordan River up by
[49:13]
Utah Lake yesterday and it didn't I
[49:16]
mean, the Jordan River was not flowing
[49:19]
much at all. It was really low. So,
[49:20]
they're not moving water from the Utah
[49:22]
Lake system.
[49:23]
So,
[49:25]
you know,
[49:26]
I don't know.
[49:32]
All right.
[49:34]
Um,
[49:35]
so, any I guess any questions there?
[49:37]
Else we'll move on.
[49:39]
Um, yeah, Bill.
[49:42]
Yeah, thank you, Jeff. Um,
[49:44]
yeah, so I think most of that delivery
[49:47]
from Utah Lake was occurring in the
[49:48]
fall.
[49:50]
And I think it showed up actually in um,
[49:53]
Christine's
[49:54]
um,
[49:55]
you know image.
[49:56]
And so
[49:58]
I guess the the the take home point is
[50:01]
that we're we're now about to face a
[50:04]
period that is
[50:06]
you know, going to be challenging. Mhm.
[50:09]
And the water deliveries that have been
[50:11]
negotiated, we'll see how much of that
[50:14]
actually materializes in a stressed year
[50:17]
like this year.
[50:19]
Where the water shed demand is going to
[50:21]
be you know, very much dictating what's
[50:23]
available to bring into the lake
[50:25]
relative to what's been negotiated.
[50:27]
Right.
[50:28]
>> Um so we're going to learn a lot this
[50:30]
summer. Mhm.
[50:34]
For sure.
[50:37]
Um
[50:38]
Great. Well, thank you. Um so Jim, did
[50:41]
you have anything to update us with what
[50:45]
you know, in terms of what DWQ is doing?
[50:49]
Um I just have a brief update. Just um
[50:52]
we're in the midst of reviewing um water
[50:55]
lease proposed
[50:57]
um lithium extraction facility in the
[51:00]
North Arm. And as you might recall, we
[51:02]
had to develop some rules a couple of
[51:03]
years ago that regulate um new
[51:07]
extraction um operations. Uh they have to demonstrate that there's no
[51:11]
negative impact to the biota or the
[51:13]
chemistry of the lake. And so
[51:15]
phased approach. The first phase
[51:17]
happened last spring where they
[51:18]
collected about 6 months worth of data
[51:21]
and um rolled that into um
[51:24]
certification application that we're
[51:26]
reviewing right now. Um where they're
[51:29]
kind of self-certifying that they're not
[51:31]
going to have an impact or negative
[51:32]
impact.
[51:34]
And um we've been working with Four
[51:35]
Seasons and Empire State Lands very
[51:37]
closely on this and um should in the
[51:39]
coming few weeks, couple of weeks have
[51:42]
um some decisions made on on that, but
[51:44]
we're still negotiating some of the
[51:45]
details of that application.
[51:48]
Uh keep in mind there will be an
[51:49]
opportunity for public review and
[51:51]
comment. The next steps would be if
[51:53]
approved that we would issue a discharge
[51:56]
permit and then they'll have a public
[51:58]
comment um period associated with that.
[52:00]
So, uh look
[52:03]
no promises, but look for something
[52:04]
sometime this spring. So,
[52:08]
that's all I got for now. All right.
[52:10]
Thank you.
[52:11]
Yep. Any questions
[52:14]
for him?
[52:16]
If not, Ben, you want to give us an
[52:18]
update? Yeah. Uh so, a couple of couple
[52:21]
of things I think the last time we met
[52:23]
was October. So, it's been pretty slow
[52:25]
for us since then. We bought a factory
[52:28]
and uh
[52:29]
it's that's that's been keeping us on
[52:31]
our toes, but um as far as salinity is
[52:33]
concerned, I think that's going to be
[52:35]
something that I would love to you know
[52:36]
discuss with
[52:37]
um this group
[52:39]
you know, eventually. We're working with
[52:41]
Cargill and um some of the other small
[52:43]
operators to figure out, you know,
[52:44]
exactly what that looks like to keep
[52:46]
them, you know, going. Um but with that
[52:48]
they're not going to need the same
[52:49]
amount of uh water
[52:51]
uh and then also they'll have a return
[52:53]
flow and I think there's a an
[52:54]
opportunity there to think about how we
[52:57]
use salinity um that's accumulated in
[52:59]
that pond to also buffer, you know, uh
[53:02]
what we do between the breach and the
[53:04]
north arm and then also how we restore
[53:06]
that portion of
[53:07]
uh of the bay.
[53:09]
So, a lot to come there and but right
[53:11]
now we're kind of focused on dealing
[53:12]
with the bank and how to let people come
[53:15]
in and get their collateral and all of
[53:16]
those issues. So, it's been a full-time
[53:19]
job or seven
[53:20]
um on top of what we're already doing.
[53:23]
Um and then we are also still working on
[53:25]
our uh comprehensive management plan and
[53:28]
mineral leasing plan.
[53:29]
Um Jacobs is helping us with those
[53:31]
plans. We're making great progress and I
[53:33]
think we'll have a draft out probably in
[53:36]
the next
[53:38]
Well, it'll be we're aiming for July for
[53:41]
the public draft.
[53:42]
>> Perfect. Um I know we have a few things
[53:44]
we're reviewing now, but we're uh
[53:46]
we're looking forward to getting that
[53:47]
out so we can um move on on getting that
[53:50]
plan finalized. There's some updates to
[53:52]
the elevation matrix and some other
[53:54]
things that um I think will be of
[53:56]
interest for everyone. We're also
[53:58]
working to finish this salinity
[54:00]
management plan so we can reference that
[54:02]
in this as well. And with that, I think
[54:04]
Jeff will talk about it later, but I
[54:06]
think we're thinking more about broad
[54:08]
goals and not uh
[54:09]
you know, when this happens, here's
[54:11]
exactly what we do cuz we know that all
[54:13]
these different dynamics um change and
[54:15]
that's kind of how it is on Great Salt
[54:17]
Lake cuz I think we uh
[54:19]
we know what we know right now and then
[54:20]
next year we're going to know a hell of
[54:21]
a lot more, hopefully.
[54:23]
Um and then as far as the water leaf uh application goes, just like Jim said,
[54:28]
we're making great progress on that. Um
[54:30]
Jake, who's sitting there in the back,
[54:32]
he's been doing the bulk of the work for our division and has done a a
[54:35]
tremendous job uh coming through that
[54:37]
combing through that with a fine-tooth
[54:39]
comb. Um but we I think
[54:41]
in coordination with water quality
[54:43]
should have decisions here in the next
[54:45]
few weeks.
[54:46]
Um and then the last thing that I wanted
[54:49]
to discuss was I I think I kind of piped
[54:51]
up and said I wanted to add this to the
[54:53]
um
[54:55]
to the agenda, but I want to discuss
[54:57]
what and how we should be thinking about
[54:59]
berm modifications this year, you know,
[55:01]
if any. There was some legislation that
[55:03]
happened in the special ses- session
[55:05]
back in October that um kind of changed
[55:07]
the dynamic of how we can consider
[55:08]
modifying the berm. It allows us to
[55:10]
consider things besides salinity um such
[55:12]
as like uh some examples would be you
[55:15]
know, microbialite coverage. Like if we
[55:16]
were, you know, a couple feet from
[55:18]
dropping below 4192 and we want to
[55:20]
consider, you know, keeping that South
[55:22]
Arm wetted so we could keep those
[55:23]
microbialites wetted, there may be some
[55:24]
advantage and maybe we can do that in a
[55:26]
way that doesn't um harm the salinity as
[55:29]
much. Um however, it does put a cap on
[55:31]
raising the berm to 4192, at least the
[55:33]
way I read it. I think there's been some
[55:35]
folks that have had different
[55:36]
interpretations, but as we go back and
[55:38]
forth, I think we've all uh ended up
[55:40]
settling on 4192 as the maximum. We
[55:42]
still have to raise it if there's if it
[55:44]
goes below 4190. So, there's not a whole
[55:47]
lot of room where we get to make
[55:49]
discretionary changes to the berm, but
[55:52]
it does exist. So, I guess what I wanted
[55:54]
to make sure we were thinking about is
[55:57]
um I I assume we're going to fall below
[55:59]
4192. I think everybody can probably
[56:01]
agree that's going to happen this year.
[56:03]
And
[56:04]
we might be in a position where we're
[56:05]
fall falling below 4190 and we have to
[56:07]
raise the berm anyway.
[56:09]
So, what I wanted to discuss was whether
[56:11]
or not um anybody has any thoughts on
[56:14]
whether we should consider, you know,
[56:15]
once we start dropping down, should we
[56:17]
raise the berm up and try to, you know,
[56:19]
impound inflows so we keep what we have
[56:22]
in the South Arm this year? Should we
[56:24]
let it drop and focus more on fall of
[56:27]
this coming year? I mean, I think the
[56:29]
one concept would be that we raise it up
[56:31]
to 4192
[56:33]
um at the end of this water year and
[56:35]
then capture everything moving into the
[56:36]
next year just knowing that if we
[56:38]
continue on a downward trend, we could have some issues. But, I'm sure
[56:42]
we'll have some different meetings
[56:43]
between now and October, but I just want
[56:45]
to make sure that
[56:46]
at least right now, we're thinking
[56:48]
through what the next step is. So, I
[56:50]
don't know if anybody has any thoughts
[56:52]
on, you know,
[56:53]
what we should be considering here with
[56:55]
spring runoff and as we enter into the summer season,
[56:58]
you know, with lake levels declining and
[57:00]
salinity levels probably rising, um if
[57:03]
there's any threshold
[57:05]
times or I guess
[57:07]
uh yeah, lake levels where we ought to
[57:09]
reconvene or consider
[57:12]
raising that. Any any thoughts from
[57:13]
anybody?
[57:17]
Then I did um include those slides that
[57:19]
I had shared with you. Oh, perfect. So,
[57:21]
I'm kind I kind of walk folks through
[57:23]
what it might look like. I don't know if
[57:24]
that's helpful, but that might help
[57:25]
facilitate the conversation.
[57:26]
>> Yeah, I think that would be awesome if
[57:27]
that's
[57:28]
Yeah. That might I think that would be
[57:30]
good. We can just jump into the next
[57:31]
agenda item and talk about the estimate
[57:34]
or estimates for this year and
[57:36]
for Kyle. And then just one thought
[57:38]
outside of salinity,
[57:40]
um we're going to talk about this a lot
[57:41]
more at our TAG meeting coming up on
[57:42]
Wednesday. So, if any of you guys can
[57:44]
attend that, but some of the emerging
[57:46]
research that we're seeing out of Gary
[57:48]
Belovsky's lab is a nutrient limitation.
[57:52]
And while we're exporting a lot of salt
[57:54]
to the North Arm, we're also exporting a
[57:55]
lot of nitrogen.
[57:57]
And in an already limited system,
[58:01]
having all that nitrogen decoupled from
[58:02]
the South Arm is becoming a problem.
[58:05]
And so, I may, you know, kind of suggest
[58:08]
that we may have look at maybe s-
[58:11]
cutting a hole in the berm, you know,
[58:12]
kind of cleaning it out a little bit now
[58:15]
and allow some North Arm water exchange
[58:17]
for the summer and then yeah, come back
[58:19]
in at the end of the water year and then
[58:21]
build that berm back up just to allow
[58:23]
some of that nitrogen to come back to
[58:24]
the South Arm and maintain productivity
[58:27]
for the biota that's there.
[58:30]
Um just a thought and I'm willing to
[58:31]
discuss it. Like I said, we'll have some
[58:34]
finer details on that on Wednesday that
[58:36]
I can't speak to yet cuz I'm not as
[58:38]
smart as Gary, but
[58:41]
maybe the industry has some thoughts on
[58:42]
that.
[58:49]
I mean, I'll just mention that it's something
[58:53]
that we've been discussing for a while
[58:54]
now that, you know, we could use we
[58:56]
could lose quite a bit of those nutrients.
[59:00]
And we haven't really
[59:02]
um determined, you know, what those
[59:04]
losses are.
[59:06]
Um so, it's certainly something we're going to have to focus on.
[59:10]
Um
[59:12]
And, you know, on the other hand,
[59:15]
if we leave the berm open, we keep
[59:17]
exporting salt. We may come to a point
[59:20]
where that salinity becomes too low.
[59:23]
Luckily, we're not there.
[59:25]
Well, I I think right now I
[59:28]
my opinion is similar to Ben's is we we
[59:31]
look at what is happening and
[59:34]
during the fall when we start to see the
[59:35]
lake or
[59:37]
when we get it when the lake reaches its
[59:40]
uh
[59:41]
its lowest point then we increase the
[59:43]
size of the berm to really capture that
[59:45]
water.
[59:46]
That would be, you know,
[59:48]
but it's
[59:50]
that's kind of an intuitive
[59:52]
approach.
[59:53]
I'm a little bit leery of opening up
[59:55]
that berm if we don't really know how
[59:57]
much
[59:59]
um nutrients we can re-import and if we
[1:00:02]
don't really know how much salt we're
[1:00:05]
going to re-import. So,
[1:00:07]
it's um
[1:00:08]
I mean, I guess it
[1:00:10]
we could look at it as an experiment
[1:00:13]
and make sure we measure everything
[1:00:15]
carefully, but
[1:00:16]
it's a big experiment. Oh, for sure. And
[1:00:21]
that's why it's a a conversation right
[1:00:23]
now of, you know, I think we're in a
[1:00:24]
good position where we're on the bottom
[1:00:27]
end of salinity that we have a little
[1:00:28]
bit of range to
[1:00:32]
absorb some of that salt
[1:00:35]
with the potential benefit of bringing
[1:00:37]
back some nutrients. So, and that's
[1:00:39]
where, you know, cleaning out what's
[1:00:42]
left of the berm. I mean, it sounds like
[1:00:43]
it's severely eroded based on the most recent topographic images of
[1:00:47]
the uh
[1:00:48]
of the berm itself. So, maybe cleaning
[1:00:50]
some of that out and creating a a space
[1:00:53]
for to facilitate North Arm water
[1:00:55]
trickling back in, which
[1:00:57]
won't be ideal because there's not a
[1:00:58]
mixing mechanism and we are going to
[1:01:00]
potentially create a deep run layer in
[1:01:03]
the in the North Basin of Farmington
[1:01:05]
Bay, but
[1:01:07]
is that beneficial? And I think that's a
[1:01:08]
conversation that would be a good thing
[1:01:10]
to have at this time moving forward so
[1:01:14]
that we have some opportunities to see
[1:01:16]
what's available, look at some of the
[1:01:18]
content. And I think some of the
[1:01:20]
measurements there it's just we need
[1:01:21]
some people to look at the data and
[1:01:24]
you know, look at it as an option and
[1:01:26]
see what's going to be best for the
[1:01:27]
system.
[1:01:29]
Carl, did did Gary tell you how much
[1:01:31]
nitrogen he thinks the bay the South Arm
[1:01:35]
has lost in
[1:01:37]
as a whole? I think he mentioned some
[1:01:39]
numbers based on some of Christine's
[1:01:41]
calculations and that's why
[1:01:44]
I'm hesitant to give a number because I
[1:01:46]
don't remember what those were.
[1:01:48]
But like I say, that's going to be a
[1:01:49]
good question on Wednesday.
[1:01:52]
And Bill, you had your hand up.
[1:01:55]
Yeah, I just want to clarify I'm really
[1:01:57]
surprised to hear that that would be
[1:01:59]
significant, the nitrogen coming from
[1:02:01]
the North Arm would be significant
[1:02:02]
compared to all the South Arm inflows
[1:02:04]
that are you know, many of which are
[1:02:05]
wastewater dominated.
[1:02:08]
Um
[1:02:09]
So I I'd really like to get a sense of
[1:02:11]
confidence level
[1:02:13]
that the North Arm is a significant
[1:02:15]
contributor of nitrogen compared to
[1:02:16]
those sources.
[1:02:19]
Um we're very confident that the North
[1:02:21]
Arm is a substantial source of nitrogen
[1:02:23]
to the system. It's about when it when
[1:02:25]
the berm yeah, when the berm was not
[1:02:28]
there and we just had bidirectional flow
[1:02:30]
from our mass balance analysis from
[1:02:32]
about 2017 to 2022, we estimate that the
[1:02:35]
North Arm is supplying about half of the
[1:02:37]
nitrogen input to the South Arm. So
[1:02:39]
that's it relative to the surface water
[1:02:41]
gauges. So we know the North Arm is a
[1:02:42]
really important source of nitrogen. The challenges with our records at the
[1:02:48]
breach is
[1:02:50]
and the challenges we've had with the
[1:02:51]
nutrient labs is stitching together
[1:02:54]
what that nutrient flux has been from
[1:02:56]
north to south. We have estimates and
[1:02:58]
essentially when you raise the berm, you
[1:02:59]
just cut off that supply which we know
[1:03:01]
is really important and I'm trying to
[1:03:03]
find my email to Gary where we estimated
[1:03:05]
this so I can give you a number, but we
[1:03:07]
were basically able to say based on our
[1:03:09]
estimates of flux that have been cut off
[1:03:11]
and relative to the nutrient mass in the
[1:03:13]
South Arm nitrogen mass, Um, it's
[1:03:16]
decreased the concentration it would
[1:03:17]
have decreased the concentration in the
[1:03:18]
South Arm by some amount and that's what
[1:03:20]
I'm trying to to look up. But, yeah, but
[1:03:22]
we know it's a really important source
[1:03:23]
of nitrogen, but it has been pretty
[1:03:24]
difficult for us to quantify, especially
[1:03:27]
after 2023. We just don't have a lot of
[1:03:29]
data to work with. Um, but we're
[1:03:32]
continuing to think about that and we'll
[1:03:33]
be presenting at the TAG on this of like
[1:03:36]
our best estimates of the flux and
[1:03:37]
relative to, you know, when we modify
[1:03:40]
the berm and we change the um the
[1:03:42]
magnitude of flux of salt, what is kind
[1:03:44]
of a proportional change in nutrient
[1:03:46]
flux we're seeing. So, yeah, we're going
[1:03:48]
to be discussing that more at the TAG.
[1:03:50]
So, Christine, did I hear you right that
[1:03:52]
you were saying 50% of the of the
[1:03:55]
nitrogen inflow
[1:03:57]
into the South Arm would be coming from
[1:04:00]
in the past, historically, had become
[1:04:02]
>> Roughly about half. Yeah.
[1:04:03]
About half and that would be an average
[1:04:05]
or that would be a maximum?
[1:04:07]
>> That's an like I think an average and I
[1:04:08]
can check those calculations, too, but
[1:04:10]
that's based on just a kind of an annual
[1:04:12]
look at the nitrogen coming into the
[1:04:14]
South Arm and it's it's substantial.
[1:04:16]
Yeah.
[1:04:17]
And to further build on that, some of
[1:04:19]
the
[1:04:20]
you know, the the suggestion that Gary
[1:04:22]
made is that the North Arm has now
[1:04:24]
become a giant sink for nitrogen. So,
[1:04:26]
while we're exporting everything, all
[1:04:27]
the nitrogen goes into the North Arm,
[1:04:29]
the water evaporates, the nitrogen
[1:04:31]
stays. With the limited return flow from
[1:04:33]
North to South, all that nitrogen's
[1:04:35]
getting concentrated up there, uh just
[1:04:38]
like the way the salt is. And so, we're
[1:04:41]
kind of net exporting
[1:04:43]
uh nitrogen out of the South Arm. So,
[1:04:45]
even though we do have inflow from
[1:04:48]
the freshwater sources, it's it pales in
[1:04:50]
comparison to what's being kind of
[1:04:53]
stuck in the North Arm.
[1:04:55]
Yeah, and how conservative nitrogen is
[1:04:57]
in the North Arm is another question and
[1:04:59]
Bonnie's been um wondering about this, the nitrogen cycling that's
[1:05:03]
happening in that hypersaline
[1:05:04]
environment. Is it merely concentrating
[1:05:07]
or is it also being transformed and
[1:05:08]
being removed in some way? We don't I
[1:05:10]
don't There's a lot of unknowns there,
[1:05:11]
but
[1:05:15]
I think um Bonnie and
[1:05:18]
um Scott have had some comments there in
[1:05:20]
the in the chat here, just acknowledging
[1:05:22]
that
[1:05:23]
um
[1:05:24]
that we do have nitrogen I guess
[1:05:26]
nitrogen fixers in the in the north arm
[1:05:29]
that would be
[1:05:30]
um bringing that nitrogen in.
[1:05:36]
So, I think
[1:05:38]
So, it's always great to find out that
[1:05:41]
things are even more complicated than
[1:05:42]
what we thought.
[1:05:44]
But, I think the I guess what I'm
[1:05:47]
hearing is that not only is that north
[1:05:50]
arm
[1:05:51]
flow
[1:05:53]
have
[1:05:54]
you know, 50% of the load into the lake,
[1:05:56]
we've cut that off. So, now we've lost
[1:05:58]
that load into the south arm, but we're
[1:06:01]
also exporting likely exporting some
[1:06:04]
nitrogen to the to the north arm. So,
[1:06:06]
that
[1:06:07]
is affecting that balance even more in
[1:06:09]
the south arm.
[1:06:11]
So, yeah. Um
[1:06:14]
I know a lot of these calculations stem
[1:06:16]
on flow and measuring flow and and USGS
[1:06:19]
has tried to
[1:06:21]
The breach is a is a really tough place
[1:06:23]
to measure. And um one of the things I
[1:06:25]
just threw this out to Ryan the other
[1:06:27]
day cuz I heard that there was potential
[1:06:28]
modifications to the to the um the berm.
[1:06:32]
Um
[1:06:33]
I've spent the last 2 weeks looking at a
[1:06:35]
lot of that data. And when the berm's in
[1:06:37]
place, we actually have um and I know
[1:06:39]
some and USU has been working on this.
[1:06:42]
There's I think the modeling as far as
[1:06:45]
predicting flow becomes a little better.
[1:06:47]
And I think USGS has methods where we
[1:06:49]
could probably have a fairly confident
[1:06:51]
number from south to north.
[1:06:53]
When we blow that berm out or move that
[1:06:55]
berm, that kind of adjust that whole
[1:06:58]
computation and makes it a little more
[1:06:59]
difficult. And one of the things I I
[1:07:01]
mean, just throwing this out there, um
[1:07:04]
one One things I thought about is if you
[1:07:06]
move that berm, you have erosion, It's
[1:07:08]
cons- pretty dynamic, it's hard to to
[1:07:10]
quantify that flow.
[1:07:13]
Would something like pumping the water
[1:07:16]
from the north arm into the south where
[1:07:18]
you can have more substantial calculations, you can quantify that flow a little bit
[1:07:24]
better. Would would definitely improve
[1:07:27]
your numbers going from south to north
[1:07:29]
and then north to south as well to kind
[1:07:31]
of maybe get a cuz I know there's a lot
[1:07:33]
of uncertainty in our flow measurements.
[1:07:35]
So, I'll I'll just say that we we
[1:07:37]
actually had the Jacobs run some
[1:07:38]
engineering on putting in a more
[1:07:40]
intelligent structure to see about like
[1:07:43]
maybe having something more uniform
[1:07:44]
that's more easily adjusted. We also had
[1:07:46]
them explore the thought of like maybe
[1:07:48]
we put in pumps and you can run it both
[1:07:51]
ways and you don't have to worry about
[1:07:52]
gravity and elevation and all that fun
[1:07:54]
stuff or siphons or other things. Um it
[1:07:57]
gets really really really expensive and
[1:07:59]
also the pumping uh
[1:08:01]
just getting enough electricity and the
[1:08:03]
size of the pumps, I mean, any of these
[1:08:04]
projects end up up at like 30, 40
[1:08:06]
million dollars. And so, I think that
[1:08:09]
when we discussed it here at the
[1:08:10]
salinity committee, it was kind of like,
[1:08:11]
well, you know, this rock berm that's
[1:08:13]
basically free um is working good
[1:08:16]
enough, but I think that this is still
[1:08:18]
something that we're interested in to
[1:08:20]
see if we can refine that. And we are
[1:08:22]
still working to incorporate some
[1:08:25]
components of what Jeff's team came up
[1:08:27]
with which one of them was uh a
[1:08:29]
protective structure, so seiches and
[1:08:31]
wave action don't affect the um you
[1:08:34]
know, the berms so we don't have like
[1:08:35]
accidental blowouts. We're a little more
[1:08:37]
informed and can like be more precise
[1:08:39]
with our adjustments and I think for
[1:08:41]
monitoring and measuring um having
[1:08:43]
something that's more uniform and not
[1:08:44]
constantly moving will also help, but um
[1:08:47]
that's yeah, we're we're still working
[1:08:49]
on that, but I think there's going to be
[1:08:50]
core permitting and um other other
[1:08:53]
issues along with that. And then I also
[1:08:55]
just had a quick question as well. Has
[1:08:56]
anybody looked to see if salinity, like
[1:08:59]
the actual concentration and nutrients
[1:09:01]
are are they correlated? Cuz I would
[1:09:03]
assume that
[1:09:05]
they've got to be somewhat in the same
[1:09:06]
realm, right?
[1:09:08]
I haven't looked at that directly, Ben,
[1:09:10]
but I'm the nutrient concentrations tend
[1:09:13]
to be fairly stable over time.
[1:09:16]
Um and while while we kind of see these
[1:09:18]
step changes in salinity based on
[1:09:20]
changing mass, but I mean recently, so I
[1:09:23]
found the email that we sent to Gary and
[1:09:26]
uh
[1:09:26]
yeah, we are seeing some changes in the
[1:09:28]
South Arm nutrient mass more recently.
[1:09:30]
Um so yeah, that's a good question. It's
[1:09:32]
just how how tightly coupled are they,
[1:09:34]
which is part of the analysis we're
[1:09:35]
doing at the the breach of just looking
[1:09:37]
at those fluxes and how their relative
[1:09:39]
changes are.
[1:09:39]
>> I mean I would think that assuming that
[1:09:41]
you know, when we have big infusions of
[1:09:43]
North Arm brines and our salinity goes
[1:09:44]
up and whatnot, that we would also have
[1:09:47]
big infusions of nutrients as well. And
[1:09:49]
so I think it'd be really interesting
[1:09:51]
before we start making decisions on
[1:09:53]
modifying the berm, like Thomas said,
[1:09:55]
you know, like can we refine that and
[1:09:57]
understand more closely like what how
[1:09:59]
that's related, but also you know, did
[1:10:02]
we look back and see like the last time
[1:10:04]
that we were 120 g per liter in the
[1:10:06]
spring, what was our nutrient where were we at on nutrients? Cuz it's
[1:10:10]
just it seems to me like it'd be really
[1:10:11]
interesting to know if we're just not
[1:10:13]
used to being at this kind of
[1:10:14]
concentration. I mean, we we were at
[1:10:15]
like 90 g per liter last spring coming
[1:10:18]
into this if I remember correctly. And
[1:10:20]
so, you know, we're we're kind of slowly
[1:10:22]
going back up and that also is what
[1:10:23]
makes me a little nervous about allowing
[1:10:26]
too much North Arm inflow is that you
[1:10:28]
know, we're one really heavy
[1:10:31]
evaporative, you know, summer, we could
[1:10:34]
be right back up at 150 g per liter, 155
[1:10:37]
and we're like, you know, right on the
[1:10:38]
cusp of being where we've been trying to
[1:10:39]
manage, you know, to keep it below that.
[1:10:41]
So, I don't know. It's a little nerve-racking to think
[1:10:45]
that we're going to get
[1:10:46]
too close, especially
[1:10:48]
and we also might be coming into another
[1:10:49]
like 10-year longer plus drought, so we
[1:10:53]
really got to think about, you know,
[1:10:54]
what we do today for the next 10 years.
[1:10:57]
I had two questions um Bill and then
[1:11:00]
Phil um and then I think it would be
[1:11:02]
really good to see what Christine's
[1:11:04]
numbers are. I think that'll help
[1:11:05]
provide a lot of context to this. Go
[1:11:08]
ahead Bill.
[1:11:09]
I'm just wondering whether the shortcut
[1:11:11]
load during runoff is exporting a lot of
[1:11:14]
nitrogen
[1:11:16]
and that it is that a major part of the
[1:11:18]
problem? And Christine, you may or may
[1:11:19]
not have a sense of that, but I'm just
[1:11:20]
throwing that out there.
[1:11:22]
Yeah, I you know, the Bear I think at
[1:11:24]
certain I'll have to look at the the um
[1:11:27]
the estimates we generated Bill and
[1:11:29]
maybe I can prepare that for Wednesday.
[1:11:30]
I don't know if you'll be at the TAG.
[1:11:31]
The Bear is being the largest inflow
[1:11:33]
carries a lot of mass, but some of our
[1:11:35]
other inflows like the Goggin and
[1:11:37]
Farmington Bay actually have high high
[1:11:39]
concentrations of nutrients, so they
[1:11:41]
actually contribute a large portion of
[1:11:43]
the nutrient mass, but I think yeah,
[1:11:45]
anytime, you know, you think about
[1:11:46]
contributions from the Bear, there's a
[1:11:48]
risk of it being lost due to that short
[1:11:49]
circuiting. So, it's an important thing
[1:11:52]
to consider.
[1:11:55]
And Bill, those uh
[1:11:57]
flows coming into the Bear, they might
[1:11:59]
be more dilute than what's in the South
[1:12:02]
Arm brine itself because
[1:12:05]
if I'm remembering the 2017 NAWQS
[1:12:07]
report, on an annual basis, river
[1:12:10]
inflows are contributing about 8%
[1:12:13]
of the nitrogen. Soluble nitrogen.
[1:12:16]
So,
[1:12:19]
uh it you know, the river inflow may be
[1:12:21]
more dilute than what the South Arm
[1:12:23]
brine is. It's delivering nutrients
[1:12:25]
because they stick in the lake, but it
[1:12:27]
might be more dilute than the brine
[1:12:28]
itself. So, that shortcutting,
[1:12:30]
ironically, could be exporting less than
[1:12:33]
if it was just straight South Arm brine,
[1:12:36]
but
[1:12:37]
I can't be certain of that.
[1:12:39]
The the way the numbers stick out in my
[1:12:40]
mind is that the
[1:12:43]
nitrogen inflow from the runoff is
[1:12:46]
basically offset by atmospheric loss.
[1:12:49]
Those are kind of
[1:12:51]
they kind of cancel each other out every
[1:12:53]
year and so the long-term model that
[1:12:56]
Gary's been building for us treats
[1:12:58]
nitrogen as just a stable pool
[1:13:00]
and it dilutes when you in increase with
[1:13:04]
runoff and it concentrates as things are
[1:13:07]
evaporating and now what the berm has
[1:13:09]
done it's it's just decoupled where that
[1:13:12]
nitrogen sits. So the amount of nitrogen
[1:13:14]
is kind of the same it's just so much
[1:13:17]
more of it is in the north arm than the
[1:13:18]
south arm and when the south arm is what
[1:13:21]
relies on that nitrogen
[1:13:23]
to the effectiveness of industry and
[1:13:27]
avian population
[1:13:29]
that's kind of hurting us is is kind of
[1:13:32]
the the thought that I'm putting out
[1:13:34]
there that I want to have a conversation
[1:13:35]
about in the future. And that concept of
[1:13:39]
somewhat stable nitrogen pool being
[1:13:41]
diluted or concentrated is present in
[1:13:44]
USGS data while the water quality
[1:13:46]
laboratory is still willing to run the
[1:13:48]
samples you could develop a pretty good
[1:13:50]
correlation between lake elevation and
[1:13:52]
total nitrogen concentration
[1:13:55]
um but the open question is has that
[1:13:57]
relationship changed the way it did with
[1:13:59]
salinity and part of the problem with
[1:14:02]
the water quality lab not running these
[1:14:03]
samples anymore is that happened um
[1:14:06]
during a period where you'd notice that
[1:14:08]
step change and we don't have the data
[1:14:10]
and uh Christine's presented on that in
[1:14:12]
TAG before it's a bit of a
[1:14:14]
um
[1:14:15]
bad timing to have a data gap so that's
[1:14:17]
kind of the open question but prior to
[1:14:20]
um a lot of berm modification it was
[1:14:22]
fairly tightly coupled elevation and
[1:14:25]
total nitrogen in USGS data so but
[1:14:27]
that's
[1:14:28]
I want to make sure we've got um cuz
[1:14:30]
that it sounds like Wednesday and this
[1:14:33]
nutrient issues going to be the main
[1:14:35]
event and
[1:14:37]
um and so we'll have all of that I mean
[1:14:39]
a lot of you will be there. Did you
[1:14:42]
some quick Yeah I just wanted to make
[1:14:43]
one more comment is that in in a little
[1:14:45]
bit of research we did on nutrient
[1:14:47]
cycling, which was Christine and the
[1:14:49]
USGS did that work.
[1:14:51]
We found that it was a lot of
[1:14:52]
sequestration of nutrients in the in the
[1:14:55]
benthic portion of the lake. And you
[1:14:57]
know, one wonders as we lost the deep
[1:15:00]
brine layer, how that may or may not
[1:15:02]
have contributed to nutrients. So, I
[1:15:04]
think there's an added complexity with
[1:15:06]
nutrients in that the cycling, you know,
[1:15:09]
creates a much more complex situation
[1:15:11]
than let's say with minerals in the
[1:15:13]
lake. So, Yeah, what I agree. There's
[1:15:15]
multiple chemical and biological
[1:15:16]
processes happening with nutrients that
[1:15:18]
is not necessarily happening happening
[1:15:20]
with salinity. But, I I will be sharing
[1:15:22]
on more on that Wednesday. Also, maybe
[1:15:23]
there won't be time cuz we'll be talking
[1:15:25]
about the firm the whole time, but um
[1:15:27]
and I did look up our email chain with
[1:15:29]
Gary and I had estimated about 0.1 to
[1:15:32]
0.2 mg per liter nitrogen decrease in
[1:15:35]
the South Arm. So, that's concentration
[1:15:37]
per year. And so, but it's important to
[1:15:39]
consider the cumulative effects of what
[1:15:40]
that might be. So, each year which we're
[1:15:42]
cutting off that nitrogen supply from
[1:15:44]
the North Arm by three year by by year
[1:15:47]
three, then I estimate about half a
[1:15:49]
milligram per liter decline of nitrogen
[1:15:50]
in the South Arm. And these are very rough estimates based on limited
[1:15:54]
data we have. Um but, that's gives you
[1:15:56]
some sense of from what you know,
[1:15:59]
conversations with Gary and looking at
[1:16:00]
our data with you know, Scott and I
[1:16:02]
looking at the data. So, And then just
[1:16:03]
for context for those online, half a
[1:16:05]
milligram per liter, what is that as
[1:16:07]
like a percentage of total nitrogen?
[1:16:08]
Percentage, it's like the the South Arm
[1:16:11]
nitrogen concentrations around four,
[1:16:13]
like four four and a half. So, fair to
[1:16:15]
say Five, yeah, so Cool. Just anywhere,
[1:16:17]
yeah.
[1:16:18]
All right, let's get into the forecast
[1:16:21]
and
[1:16:37]
Okay.
[1:16:38]
Well, I followed the norm the approach
[1:16:40]
we normally do, but um as mentioned, we
[1:16:42]
may have already peaked. So, these may
[1:16:44]
not be super meaningful. Again, our most
[1:16:46]
recent uh estimate for as of March 4th
[1:16:48]
was 119 g per liter based on observed
[1:16:51]
data. I'm and then I I kind of only
[1:16:53]
carry this to April 30th, just assuming
[1:16:56]
that this is not going to be a long run
[1:16:57]
off-season. And so, any precipitation
[1:17:00]
coming in during that time, evaporation,
[1:17:02]
inflows, all that stuff is considered.
[1:17:05]
And I'll just
[1:17:06]
cut to the chase here. Here's a table of
[1:17:08]
predictions for April 30th. Um I include three climate uh scenarios.
[1:17:13]
So, starting at the top row is our dry
[1:17:15]
warm, middle is our average condition,
[1:17:17]
and then uh the bottom one is a wet cool
[1:17:19]
condition. So, ranging from 112 to 118.
[1:17:23]
I kind of put in a little plug there um
[1:17:25]
just showing what the NRCS forecast at
[1:17:27]
4192.4
[1:17:29]
is what they forecast for the seasonal
[1:17:30]
peak, and that would result in a uh
[1:17:33]
salinity of 117 g per liter. So, just a
[1:17:35]
little bit
[1:17:36]
lower than than our um volume weighted
[1:17:39]
salinity we calculated for March 4th.
[1:17:41]
So, that not much change from what we're
[1:17:43]
already seeing, unless we get a lot more
[1:17:46]
precipitation coming in.
[1:17:48]
Is my Okay, mic's on. Okay.
[1:17:51]
So, um and then I just did a really This
[1:17:54]
is my back-of-the-envelope calculation
[1:17:56]
for fall of 2026 and what that might be.
[1:17:59]
Um this is a plot showing the annual
[1:18:00]
drop in elevation from a spring peak to
[1:18:03]
fall low back to 1960, approximately. We
[1:18:06]
could to show that the um elevation
[1:18:07]
decline each year has been going up.
[1:18:10]
That's a
[1:18:11]
significant trend we're seeing. And so,
[1:18:13]
then I just sort of took that average um
[1:18:16]
decline, 2.66 ft, and then applied a
[1:18:19]
confidence interval to get a range. Um
[1:18:21]
so, anywhere from 2.9 to 2.4 ft foot
[1:18:25]
decline from our spring high to our fall
[1:18:27]
low. Using the NRCS uh spring peak
[1:18:31]
forecast of 117 g per liter, that gets
[1:18:34]
us to a fall concentration ranging from
[1:18:36]
like around 140 g per liter.
[1:18:38]
I did also try this with volume looking
[1:18:41]
at the trend in um South Arm volume
[1:18:43]
decline. There's still a trend um
[1:18:46]
but the elevations the the fall
[1:18:49]
elevations
[1:18:50]
kind of were not as reasonable. So here
[1:18:53]
we're kind of looking at around 3 ft
[1:18:54]
decline high twos, which is in line with
[1:18:57]
our historical record. If I apply a the
[1:18:59]
volume volume approach, I'm getting more
[1:19:01]
into like the 3 and 1/2 ft decline.
[1:19:03]
Maybe that's reasonable for this year,
[1:19:04]
but it's not something we've observed uh
[1:19:07]
before. And those concentrations, if I
[1:19:10]
do that, that's around 145 to 150 g per
[1:19:13]
liter for the fall. So just giving you
[1:19:14]
some sense of the different approaches
[1:19:16]
that um
[1:19:17]
can be used, but this is gives us some
[1:19:20]
idea.
[1:19:22]
Okay, so now I'm going to walk us
[1:19:24]
through these couple of different
[1:19:25]
scenarios. And please jump in at any
[1:19:27]
time if there's questions, cuz I'm going
[1:19:29]
to be using our iso mass plot, which I
[1:19:30]
realize can be a bit of a a mind game.
[1:19:34]
But the first scenario is that we lower
[1:19:36]
the berm. Basically uh Ben asked, you
[1:19:39]
know, reached out maybe a a month ago or
[1:19:41]
so and said, "Can we just start to think
[1:19:43]
about what how salinity would change
[1:19:45]
under a couple of different scenarios?"
[1:19:47]
The first being we want to import salt
[1:19:49]
during the summer because we're kind of
[1:19:51]
getting in you know, maybe we're
[1:19:53]
flirting with low range. What would
[1:19:55]
happen if we open the berm and imported
[1:19:56]
some salt over the summer time? So
[1:19:58]
that's our first scenario. We lower the
[1:20:00]
berm in May um to import salt from the
[1:20:02]
north during the summer and then we
[1:20:04]
raise the berm in November-ish
[1:20:07]
to uh to trap all spring inflows. So and
[1:20:09]
this analysis is assuming when we raise
[1:20:11]
the berm, we disconnect the north and
[1:20:13]
the south arm. So assuming that we stay
[1:20:15]
below that 4192 if that's the highest we
[1:20:17]
can go for the berm uh construction. The
[1:20:20]
second scenario is we don't change the
[1:20:23]
berm until November of 2026. So we
[1:20:25]
continue in the paradigm we are now,
[1:20:26]
which is uh seems to be a net export of
[1:20:29]
salt. So salt will continue to ratchet
[1:20:31]
down. So those are the two things we're
[1:20:32]
considering.
[1:20:34]
Um all right, so here we can get
[1:20:35]
familiar with where we are now as of
[1:20:37]
March 4th our measurements
[1:20:39]
are we have our South Arm elevation on
[1:20:41]
the Y axis and our volume weighted
[1:20:42]
salinity um on the X axis. And we're as
[1:20:46]
of March 4th we were sitting 118 and
[1:20:48]
4192.2 ft. So that's our starting
[1:20:51]
condition. And these kind of dashed
[1:20:53]
lines just kind of mark um how I
[1:20:56]
triangulate to see to get to these these
[1:20:59]
points these estimates that I'll be
[1:21:00]
getting at. And all these are based on a
[1:21:02]
spreadsheet mass balance calculation as
[1:21:04]
well, but these plots actually
[1:21:05]
illustrate really well how we move
[1:21:07]
through these three variables. And that
[1:21:10]
the dashed uh ice mass line that's kind
[1:21:12]
of curved that's in between the 800
[1:21:14]
million tons and the billion ton, that's
[1:21:16]
kind of our current mass. So you can see
[1:21:18]
how I'm triangulating between the dashed
[1:21:21]
line that is the mass, the dashed line
[1:21:22]
that's elevation, and then salinity.
[1:21:24]
That gets us to our salinity.
[1:21:26]
So
[1:21:27]
uh assuming that we peak around May 1st,
[1:21:31]
um this is the NRCS estimate. So
[1:21:33]
assuming we get up to 4192.4 which we've
[1:21:36]
actually kind of already hit um and that gets our salinity to 117 g per
[1:21:40]
liter. At that time I'm estimating
[1:21:42]
around a mass of 870 million tons.
[1:21:46]
So then moving forward I introduce these
[1:21:48]
berm management modifications. So for
[1:21:51]
the first scenario we're lowering the
[1:21:52]
berm on May 1st. So what happens with
[1:21:54]
that?
[1:21:55]
Um
[1:21:57]
as of November 1st, 2026 we've got two
[1:21:59]
different scenarios. The kind of
[1:22:01]
orangish uh yellowish scenario is that
[1:22:04]
we import salt over the summer. So
[1:22:06]
that's the situation where we would have
[1:22:08]
lowered it and we would have imported
[1:22:10]
salt um on the order of 35 million tons
[1:22:13]
over the summer.
[1:22:15]
That raises that would raise our mass uh
[1:22:17]
to 905 million tons. That's the kind of
[1:22:20]
the um higher dashed line. And then the
[1:22:23]
blue box and the blue dot represent what
[1:22:25]
if we don't change the berm at all? We gradually export salt so that those
[1:22:30]
two lines, that's really the key. Those
[1:22:32]
two dashed isomath lines are offset and
[1:22:35]
that gives us our range in salinity. So,
[1:22:37]
141 g per liter for not modifying the
[1:22:39]
berm in May and 149 g per liter in the
[1:22:42]
fall for modifying the berm in May.
[1:22:45]
Again, because we're just importing more
[1:22:46]
salt and that's the effect on the South
[1:22:48]
Arm.
[1:22:49]
So, after this point, for both of these
[1:22:51]
scenarios, we raise the berm completely
[1:22:53]
so we're up to we're disconnecting the
[1:22:55]
North and the South Arms. The mass stays
[1:22:58]
the same from here moving forward. So,
[1:22:59]
we have our two scenarios, one at 900
[1:23:02]
and 5 million tons, one at 856 million
[1:23:04]
tons.
[1:23:06]
So, taking us forward to May 30th of
[1:23:08]
2027,
[1:23:10]
um this is now these very variations we
[1:23:12]
see are really based on estimates of
[1:23:15]
inflow from the climate. So, the um
[1:23:18]
the orangeish color, that's the scenario
[1:23:20]
where we have the import salt and a
[1:23:22]
really dry warm uh climate condition.
[1:23:25]
That would get us to 135 g per liter in
[1:23:28]
the spring.
[1:23:29]
If we don't modify the berm, we have
[1:23:31]
really wet cool condition, the model
[1:23:32]
indicates we would be at 110 g per liter
[1:23:35]
in the spring of 2027. Huge range, but
[1:23:38]
gives you some idea of um the effect of
[1:23:41]
the berm modification, the effect of
[1:23:42]
climate different climates. And I guess
[1:23:44]
I'll point out that for the scenario
[1:23:46]
where you do raise lower the berm, this
[1:23:49]
kind of orangey one,
[1:23:51]
that one alone, given um kind of a wet
[1:23:55]
Wait, that would take us Okay, I'm not
[1:23:56]
going to try to do this do this on the
[1:23:58]
fly. There's that big range you can kind
[1:24:00]
of see there.
[1:24:02]
And then we'll get going further to
[1:24:03]
October 30th of 2027, still assuming the
[1:24:06]
mass has been the same, that things are
[1:24:08]
disconnected. Um
[1:24:10]
you can kind of see where that would
[1:24:11]
shift everything. So, for the scenario
[1:24:13]
where we did import salt over the summer
[1:24:16]
of 2026, that gets us to 165 g per
[1:24:19]
liter. And then for the
[1:24:21]
condition where the berm was not
[1:24:23]
modified in May um for a wet cool
[1:24:25]
condition you get 125 grams per liter.
[1:24:27]
And so again, I just highlighted the
[1:24:28]
kind of the extremes of what these could
[1:24:30]
be just to give you a sense, but I will
[1:24:33]
say
[1:24:34]
in both of these if if the berm is
[1:24:36]
raised in November this you know this
[1:24:38]
November what you have to consider is
[1:24:41]
the
[1:24:41]
then you're setting yourself up for a
[1:24:43]
head differential. So why while we're
[1:24:45]
exceeding um 100 you know this 160 grams
[1:24:49]
per liter optimal in this kind of
[1:24:50]
extreme condition that's highlighted in
[1:24:53]
orange
[1:24:55]
you are going to be in an export
[1:24:58]
paradigm um
[1:24:59]
from here on out without the ability to
[1:25:01]
import salt from the north arm. And
[1:25:03]
that's just something Ben and I kind of
[1:25:05]
discussed is like when you modify the
[1:25:07]
berm maybe you're shifting your salinity
[1:25:09]
range in the south arm but you're also
[1:25:11]
um kind of setting yourself up for a
[1:25:13]
certain condition moving forward which
[1:25:15]
is that
[1:25:16]
you know when you lower the berm or
[1:25:18]
whatever you were going to going to do
[1:25:19]
you're going to have a head differential
[1:25:20]
so that the south is going to be
[1:25:22]
exporting um into the north arm. You're
[1:25:24]
going to be in a paradigm where you lose
[1:25:26]
salt mass after modification of the berm
[1:25:29]
raising of the berm I should say.
[1:25:31]
So this is these are the this is it. So
[1:25:33]
if you guys have any questions or um
[1:25:36]
this helps facilitate what could happen.
[1:25:39]
Does that make sense? The walking this
[1:25:41]
okay.
[1:25:45]
So we need to crystal ball see what the
[1:25:47]
next 5 years
[1:25:48]
Exactly. Yes. Can we work on that?
[1:25:54]
I I do think though
[1:25:56]
you know this erosion that's happened
[1:25:59]
like we're
[1:26:00]
we've been pretty lucky that we're now
[1:26:02]
only exporting did you say 28 million
[1:26:04]
tons a year?
[1:26:06]
And so we're this kind of like
[1:26:07]
equilibrium and I think it'll continue
[1:26:09]
to
[1:26:10]
probably erode from time to time. And so
[1:26:12]
part of me just thinks that maybe we
[1:26:14]
just
[1:26:15]
leave it where it's at and continue to
[1:26:17]
monitor and then react if it seems like
[1:26:20]
things are not going the way we want it
[1:26:21]
to, but you know, like when Christine
[1:26:24]
and I discussed this, I think the idea
[1:26:26]
of being able to get it, you know, bring
[1:26:28]
back some of that salt and nutrients,
[1:26:31]
you know, like this is another portion
[1:26:32]
of that that we need to consider and I
[1:26:34]
think we're highly considering changing
[1:26:35]
this committee's name to snack so we can
[1:26:38]
incorporate nutrients into the uh
[1:26:40]
salinity.
[1:26:41]
But uh but those are some of the things
[1:26:43]
that I think we have to seriously
[1:26:45]
consider, but it does put us into a
[1:26:46]
position where, you know, if we in 2027,
[1:26:49]
which it's kind of crazy to think about
[1:26:51]
um that far out right now, it does put
[1:26:53]
us in a position where then we would
[1:26:55]
continue in that export paradigm, but
[1:26:57]
then are we just set ourselves up for
[1:26:58]
just doing this all the time and forever
[1:27:01]
or can we find that stable condition
[1:27:02]
where the berm
[1:27:04]
you know, we get just enough from the
[1:27:06]
north arm, but not too much. I mean, I I
[1:27:09]
tend to think that maybe that's where we
[1:27:10]
want to go is maybe lowering it just
[1:27:12]
enough to try to keep the export uh at
[1:27:15]
zero.
[1:27:17]
I don't know.
[1:27:24]
Yeah, that's a real problem, Evan,
[1:27:26]
because if we continue in this drought,
[1:27:29]
then we know that unless we can get a
[1:27:31]
significant amount of
[1:27:34]
uh additional leased water into the
[1:27:35]
lake, the lake's going to keep going
[1:27:37]
down and the only way to prevent that is
[1:27:41]
to reduce the evaporative surface, which
[1:27:43]
is making it a smaller lake shutting off
[1:27:45]
the north arm.
[1:27:47]
Then we lose that tool.
[1:27:51]
Between a rock and a hard place here.
[1:27:53]
>> I'll say too that I mean, there's quite a bit of regulatory uh you know,
[1:27:58]
oversight on on this. Like we can't keep
[1:28:01]
the north arm, you know, segregated from
[1:28:03]
the south arm and and make a lower
[1:28:05]
smaller lake by by uh
[1:28:08]
you know, recommendation or just by
[1:28:09]
doing that. It
[1:28:11]
There's a There's a lot of strings tied
[1:28:12]
to that. So, we can only do that I think
[1:28:14]
for 18 months and then we have to lower
[1:28:16]
it again. So, there's there's things that we have
[1:28:20]
to consider, but I do think when we can
[1:28:21]
buy ourselves like another like if we're
[1:28:23]
entering into a drought year, if we can
[1:28:25]
buy an extra year of keeping you know my
[1:28:27]
curly lights wetted, keeping the
[1:28:29]
salinity where we wanted, keeping boat
[1:28:31]
harbors functional, keeping you know,
[1:28:34]
all these things intact.
[1:28:36]
Like that's something we have to
[1:28:37]
consider as well and that's not
[1:28:39]
something that we were able to really
[1:28:40]
talk about or consider
[1:28:42]
prior to the legislation in the special
[1:28:44]
session.
[1:28:46]
And And don't don't forget
[1:28:49]
we can reverse flow like come September.
[1:28:53]
You know, we shut our our pumps off on
[1:28:55]
Promontory Point. You can reverse flow
[1:28:58]
and
[1:28:59]
you know, continue to move North Arm
[1:29:01]
brine
[1:29:03]
you know,
[1:29:04]
controlled
[1:29:05]
you know, into the South Arm if there
[1:29:07]
was a
[1:29:08]
dire nitrogen need. You know, so so that
[1:29:11]
could operate.
[1:29:13]
I'll say October through through March.
[1:29:17]
You know, so that's not an insignificant
[1:29:19]
quantity.
[1:29:25]
So, So, for for now though, just to make
[1:29:28]
sure we're all on the same page, we're
[1:29:30]
not doing anything until we all get back
[1:29:34]
together and decide we need to do
[1:29:35]
something or does anybody feel like
[1:29:36]
there's something that needs to be done
[1:29:38]
between now and the next SAC meeting
[1:29:40]
because I
[1:29:42]
personally I feel like I'm I'm just like
[1:29:44]
on the fence could go either way
[1:29:46]
and there's a lot of benefits pros and
[1:29:47]
cons on either either way we look at it,
[1:29:50]
but I don't know that we have enough
[1:29:51]
information to make decisions based on
[1:29:52]
nutrients yet and I also don't know that
[1:29:55]
it makes a ton of sense to do anything
[1:29:57]
before we know you know, what this next
[1:30:00]
storm looks like or you know, how hot
[1:30:02]
and dry the summer was. I mean, there's
[1:30:03]
just so many variables that it seems to
[1:30:05]
me like waiting this out a little bit
[1:30:07]
and reconvening if we think there's
[1:30:08]
something to do would be the the way
[1:30:10]
that I'd like to go forward.
[1:30:13]
Yeah, I'm definitely on board with that.
[1:30:15]
I just wanted nitrogen in the
[1:30:17]
conversation and I think we're I think
[1:30:19]
we're there because I mean this speaks
[1:30:21]
to Thomas's trepidation and mine of like
[1:30:23]
we're right back to 165
[1:30:26]
if everything shakes out in the negative
[1:30:28]
way like we think it might. So.
[1:30:31]
But as long as we have, you know, I
[1:30:33]
agree with Ben that finding kind of that
[1:30:35]
middle ground of maybe we
[1:30:37]
lower the berm to some
[1:30:39]
lower than it is now but not all the
[1:30:41]
way. Maybe there is some middle ground
[1:30:43]
and then we can tighten up this range a
[1:30:45]
little bit and that's kind of the
[1:30:47]
homework for this group is
[1:30:51]
run what numbers we have and
[1:30:53]
get back together and see what's going
[1:30:54]
to be the best option going forward.
[1:30:56]
>> Is there a way to, you know, with the erosion that's occurred, is there a
[1:31:00]
way to model what a uniform, you know,
[1:31:03]
berm would look like at 4186, 4187 just
[1:31:07]
to know if we were able to modify that
[1:31:08]
and see if, you know, what would that
[1:31:10]
look like? Like could we try to figure
[1:31:12]
out what that zero export looks like
[1:31:14]
where it's communicating just enough
[1:31:16]
that we're maybe getting some nutrients
[1:31:17]
back but during runoff we're, you know,
[1:31:19]
exporting a little bit like
[1:31:22]
do you think there's any way to try to
[1:31:23]
figure out how we balance the checkbook
[1:31:25]
on this one and
[1:31:29]
Um yeah, we can definitely run the
[1:31:31]
hydraulics. Jeff, you guys have done
[1:31:32]
that, right?
[1:31:33]
Jacobs?
[1:31:34]
>> We Yeah, with the CFD model.
[1:31:37]
Um I think that can be done.
[1:31:39]
Um
[1:31:41]
it's just a matter of identifying
[1:31:43]
all defining all the different variables
[1:31:45]
that go into it.
[1:31:46]
Um but I think that I guess that's what
[1:31:49]
I'm just thinking over the next month or
[1:31:51]
two.
[1:31:52]
I mean this week there will be a lot of
[1:31:54]
discussion at the TAG meeting on on
[1:31:56]
nutrients and
[1:31:58]
which hopefully the outcome from that
[1:32:00]
can be, you know, what's the sense of
[1:32:02]
urgency
[1:32:04]
on this and, you know, what's
[1:32:07]
what might the trajectory be over the
[1:32:09]
next year or two? Um,
[1:32:11]
cuz we're
[1:32:13]
So, nutrients just adds another variable
[1:32:15]
to the mix, you know, where we're we've
[1:32:17]
been focused on well, what might the
[1:32:19]
inflows be
[1:32:21]
and how do we manage the salinity based
[1:32:23]
on that? And now now we have another
[1:32:26]
variable that works in opposite of
[1:32:29]
salinity.
[1:32:30]
And so, that makes our fine line even
[1:32:35]
narrower um, to try to balance all those
[1:32:37]
different things.
[1:32:39]
Um, so I think the key to bracketing
[1:32:41]
that is just trying to understand well,
[1:32:43]
how urgent are we? And I think what you
[1:32:45]
did here with the salinity is fantastic
[1:32:47]
cuz it gives us an idea of
[1:32:50]
what's the worst that could be um,
[1:32:52]
and where might be a more probable
[1:32:54]
approach to it.
[1:32:56]
And I think if we could somehow
[1:33:00]
take the nutrient and follow the same
[1:33:02]
assumptions you did to see, you know,
[1:33:05]
what might happen if we do these two
[1:33:07]
scenarios
[1:33:08]
for the nutrients and then we can and
[1:33:11]
then it's going to come down to what's
[1:33:13]
worse.
[1:33:15]
I I think um,
[1:33:18]
cuz unless
[1:33:20]
So, I I mean, I think it over the next
[1:33:22]
month So, this week we have the tag
[1:33:23]
meeting and then if if we can try to
[1:33:27]
estimate well, what would the berm need
[1:33:28]
to be to try to back to get to a net
[1:33:30]
zero flux? Um,
[1:33:33]
cuz that would help bring some nutrients
[1:33:35]
back into it. And
[1:33:38]
So, my where I'm going with this is that
[1:33:39]
perhaps rather than having a meeting our
[1:33:42]
next meeting in June, we might need to
[1:33:44]
have a a meeting in between just to to focus on this specific question.
[1:33:51]
And
[1:33:52]
just to try to grapple with, you know,
[1:33:55]
how how can we balance this? And do we
[1:33:57]
want to make a a change of the berm now
[1:34:00]
or should we just wait till November?
[1:34:03]
Jeff. Should Christine should should we
[1:34:06]
make a calculation that would bring us
[1:34:08]
somewhere in between on a berm
[1:34:10]
modification?
[1:34:11]
Where we would lower the berm but not
[1:34:15]
entirely to a level where we end up
[1:34:19]
between the orange and the blue.
[1:34:22]
Is that
[1:34:23]
something we can do?
[1:34:24]
>> Meaning a specific berm elevation?
[1:34:27]
>> berm elevation?
[1:34:28]
>> I think we would need to talk to Sam or Jeff because I think it's it's about there's a number of factors
[1:34:35]
but it's all about hydraulic head, you
[1:34:36]
know, the concentration in each side of
[1:34:38]
the arm, you know, the difference in
[1:34:40]
elevation between the two arms and
[1:34:42]
really it's predicting flow and and each
[1:34:44]
side. And so I can look at historic our
[1:34:47]
historical record and and
[1:34:49]
but really nothing is going to be
[1:34:51]
representative of another berm
[1:34:52]
condition. And so I think it really will
[1:34:55]
be working with Sam and his team to say,
[1:34:57]
"Okay, what if we had a berm at 4186 or
[1:35:00]
something straight and then how might
[1:35:02]
that affect our north to south flow and
[1:35:04]
our south to north flow?" And really the
[1:35:05]
calculation is easy. We just need net
[1:35:08]
salt flux and we can assume a certain
[1:35:10]
amount of what we can measure the the
[1:35:12]
salt in the north arm. We can easily
[1:35:13]
measure the salt fluxes. It's just
[1:35:15]
dialing in, you know, what the dis you
[1:35:18]
know, what the discharge will actually
[1:35:20]
be estimating discharge under that
[1:35:21]
condition. That's the hard part. The
[1:35:23]
salt flux calculation isn't hard but you
[1:35:25]
know, making that salt flux a net zero
[1:35:27]
essentially I think is what I'm hearing.
[1:35:28]
Um and then seeing if Sam has insight in
[1:35:31]
how we you know, what what cross section
[1:35:34]
shape gets us there for the conditions
[1:35:36]
we have at a given moment.
[1:35:39]
Mhm.
[1:35:41]
Jeff, I I like your idea of reconvening
[1:35:43]
before our June meeting um since we know
[1:35:46]
that the runoff is probably going to end
[1:35:48]
much sooner than it normally would. I
[1:35:50]
would suggest maybe we should
[1:35:52]
you know, shoot for something
[1:35:54]
maybe at the issues forum. We all sit
[1:35:55]
down and discuss this at lunch. But
[1:35:58]
or maybe the week after. But
[1:36:00]
something where we can have the time of
[1:36:02]
kind of seeing when peak runoff is or
[1:36:04]
when runoff is finished and know if you
[1:36:07]
know, what the summer's looking like.
[1:36:08]
We'll probably have a better forecast of
[1:36:09]
weather and know what the spring
[1:36:11]
precipitation looked like. So, maybe we
[1:36:13]
get together then and then come ready to
[1:36:16]
discuss whether or not like focus on
[1:36:18]
that whether we want to decide if we're
[1:36:21]
going to modify the berm leave it the
[1:36:23]
same or do it in the fall. Mhm. And
[1:36:26]
that'll I think that should just be the
[1:36:28]
really the sole discussion. Maybe some
[1:36:29]
forecasts and then jump right into what
[1:36:32]
we all think we need to do. Right.
[1:36:34]
And a nutrient iso-mass plot. Oh, yeah.
[1:36:37]
We're going to enter a new world
[1:36:38]
together with a nutrient iso-mass plot.
[1:36:41]
Which is going to be hard cuz it's not
[1:36:43]
conservative and we don't know all the
[1:36:44]
nutrient cycling mechanisms, but we can
[1:36:46]
try.
[1:36:48]
And I think that net zero salinity
[1:36:52]
scenario just in my mind if we find
[1:36:54]
that, you know, whether it's 86 or 87,
[1:36:56]
whatever where we're importing just as
[1:36:59]
much salt as we're exporting, we'll
[1:37:00]
actually
[1:37:03]
if everything shakes out the way it is
[1:37:04]
in my head
[1:37:06]
and that what I understand in my limited
[1:37:08]
understanding of it is we should be a
[1:37:09]
net import of nitrogen from north to
[1:37:11]
south, which would benefit the South
[1:37:14]
arm.
[1:37:15]
Yeah. So, I think if we can run those
[1:37:17]
models and have that for a meeting in
[1:37:20]
you know, the next before June. Yeah. I
[1:37:22]
think that would be a good conversation
[1:37:24]
to have and a timely conversation to
[1:37:26]
have. And then yeah, we can make a
[1:37:27]
decision based on those later and Right.
[1:37:30]
maybe it is leave it alone.
[1:37:32]
But then we'll know.
[1:37:33]
Right.
[1:37:34]
Great.
[1:37:36]
Well, let's um
[1:37:38]
we'll we'll we'll schedule the next
[1:37:39]
meeting here in a little bit. Um
[1:37:41]
but I guess moving on
[1:37:43]
there's and there's so much that we
[1:37:45]
could talk about with that. Um but let's
[1:37:47]
given the discussion that's going to
[1:37:49]
happen on Wednesday
[1:37:50]
um, and the modeling questions that we
[1:37:52]
have, I think that'll really help inform
[1:37:55]
the next our next time where we discuss
[1:37:57]
this. So,
[1:37:58]
I think that's a good move. Um, I think
[1:38:01]
I guess I I'm looking at the time here
[1:38:04]
and wanted to just make sure we can
[1:38:06]
touch on the last few agenda items. Um,
[1:38:09]
the the next one was was the protocol
[1:38:12]
that
[1:38:13]
Christine's been using
[1:38:15]
that we've been using and just wanted to
[1:38:18]
see if if there were any remaining
[1:38:20]
comments. And Christine, now that this
[1:38:22]
has gone through the full USGS review
[1:38:25]
and approval process, correct?
[1:38:28]
Yes, this is um, ready to be published
[1:38:30]
whenever this group is says it's ready.
[1:38:33]
Great.
[1:38:34]
So, any I guess any questions from the
[1:38:36]
committee on this?
[1:38:42]
Any concerns with approving it? And if not, entertain a motion to approve
[1:38:48]
it.
[1:38:51]
Thomas?
[1:38:52]
Move. So moved. And Andrew second it.
[1:38:56]
All right. And I guess the vote with the
[1:38:58]
committee members, um,
[1:39:00]
all those in favor say I.
[1:39:03]
I.
[1:39:06]
And any any
[1:39:10]
one within
[1:39:12]
does not want to approve it?
[1:39:16]
Or any any further discussion? I guess
[1:39:17]
this is the last chance you got if you
[1:39:19]
have any more questions or concerns.
[1:39:24]
All right. Well, I think it's passed
[1:39:26]
unanimously and so we will approve that
[1:39:29]
and
[1:39:30]
um,
[1:39:31]
so I guess from a logistics standpoint,
[1:39:33]
and USGS will publish this, correct? And
[1:39:36]
then that'll be available. That's the
[1:39:38]
question I had, actually. Is if we want
[1:39:40]
to put it on a state website or if you
[1:39:42]
if we need USGS to host it. Technically,
[1:39:45]
anything that gets published by USGS
[1:39:46]
needs to be publicly available. So,
[1:39:48]
either we figure out a place to host it
[1:39:50]
or if there's a centrally located
[1:39:52]
website that Forestry, Fire, and State
[1:39:53]
Lands or another entity would like to
[1:39:55]
host it, then
[1:39:56]
that's great. Right.
[1:39:58]
I guess I think previous publications
[1:40:01]
that we've approved from this committee
[1:40:03]
have gone on the USGS or UGS.
[1:40:07]
Yeah, we'd be happy to
[1:40:08]
publish that. Great. We just I just sent
[1:40:10]
it to you, Andrew. Sure. Okay. Awesome.
[1:40:12]
Thanks. Great.
[1:40:13]
>> I did and may I um
[1:40:15]
>> Mhm. share one thing. I did prepare
[1:40:17]
slides in case anybody wants to go
[1:40:18]
through the method for like the seventh
[1:40:20]
time. But, one thing that you had asked
[1:40:22]
me to do, Jeff, was to kind of mock up
[1:40:25]
what this would look like on the
[1:40:26]
hydromapper. Mhm. So, this is I had our
[1:40:29]
web developer or maintainer do that. And
[1:40:31]
so, currently, this is kind of what you
[1:40:33]
see on the homepage. I know this is
[1:40:34]
small, but this top plot is what we have
[1:40:36]
now, which is salinity showing at 3510
[1:40:39]
and at Saltair. These are just raw
[1:40:41]
measurements of salinity. Um and if we
[1:40:44]
wanted to put in this upper brine layer
[1:40:46]
volume weighted estimate, which is the,
[1:40:48]
you know, the calculated value, um and
[1:40:50]
put that on the hydromapper, I just
[1:40:52]
wanted to show you that's what this
[1:40:53]
would look like. Um and it and ask if we
[1:40:55]
wanted to make that change on the
[1:40:57]
hydromapper website. Instead of using
[1:40:59]
Saltair, use this kind of calculated
[1:41:02]
value.
[1:41:05]
So, or you don't have to decide now, but
[1:41:07]
it's an option and this is what it looks
[1:41:09]
like.
[1:41:12]
Any comments or
[1:41:14]
thoughts?
[1:41:17]
I think we discussed this at the last
[1:41:19]
SAC or maybe the one before that when we
[1:41:21]
started this, but
[1:41:22]
uh you're able to do that for all that
[1:41:24]
data going all the way back for the
[1:41:27]
hydromapper, right? So, nobody would be
[1:41:28]
confused by a change in Yep, exactly.
[1:41:31]
Yeah, especially for this upper brine
[1:41:32]
layer cuz it's just taking the top 4 m.
[1:41:35]
It's less computationally subjective,
[1:41:37]
I'll say, because you don't have to
[1:41:38]
worry about the interface. So, yes. Mhm.
[1:41:41]
I think that's where a lot of folks that
[1:41:43]
are, you know, just your everyday person
[1:41:45]
who's worried about that goes. So, I
[1:41:47]
think as long as it can go back and be
[1:41:48]
kind of retroactive, I think that's a
[1:41:51]
good idea to do it this way. Okay.
[1:41:53]
Mhm.
[1:41:54]
Great. And I think I mean the the actual
[1:41:57]
data is still available. Mhm.
[1:41:59]
Definitely. And if people want to plot
[1:42:01]
that as well. Mhm. So, I think
[1:42:05]
on the salinity management plan, that
[1:42:07]
was one of the
[1:42:08]
um
[1:42:09]
that one of the goals of calculating
[1:42:11]
this upper brine layer number was so
[1:42:13]
that the public could kind of have a better understanding of what's
[1:42:17]
happening.
[1:42:18]
Um
[1:42:19]
because of the different spatial
[1:42:20]
differences and everything. So.
[1:42:25]
I I guess do we need to vote on that?
[1:42:28]
Should we vote? I guess any concerns
[1:42:30]
with
[1:42:31]
using that upper brine layer on the
[1:42:33]
hydro mapper? Just making that the
[1:42:35]
default number that people can see.
[1:42:38]
All right. We'll do that. Sounds good.
[1:42:40]
We will implement it.
[1:42:43]
Great.
[1:42:45]
So, um
[1:42:46]
as the the the other thing I wanted to
[1:42:49]
touch on and and I think is and I guess in light of the nutrient question, I guess it's a question I wanted to make sure we
[1:42:58]
have a chance to think about or talk
[1:43:00]
about. We have this draft salinity
[1:43:02]
management plan that um we've been
[1:43:05]
bouncing around for since last summer, I
[1:43:07]
think, and
[1:43:08]
um you know, is that something that the
[1:43:11]
committee would like to approve now? Um
[1:43:13]
we've had Now that we have an approved
[1:43:16]
protocol, we're using that in the as
[1:43:19]
part of the salinity management plan.
[1:43:22]
Um
[1:43:26]
I think the, you know, I've got the
[1:43:27]
slides. I don't know if we want to go
[1:43:29]
through I I I've gone through this a
[1:43:31]
couple times with with you all over the
[1:43:32]
last 6 months.
[1:43:34]
Um but is that something that you think
[1:43:36]
the plan is ready to be approved um as,
[1:43:39]
you know, for March 2026 or is that
[1:43:42]
something that we want to wait
[1:43:45]
Just before we talk about the approval,
[1:43:47]
can you just maybe remind everybody
[1:43:49]
again
[1:43:50]
um the, you know, the premise of like
[1:43:53]
what this management plan does because
[1:43:54]
one of the things that I was a little
[1:43:55]
concerned about is with the
[1:43:57]
ever-changing dynamic of like
[1:43:58]
legislation and things that happen, you
[1:44:00]
know, with the berm or other things that
[1:44:02]
might influence salt. Um you know, even
[1:44:05]
just reclamation of the US Mag ponds or,
[1:44:09]
you know, Newfound and Basin, Newfound
[1:44:11]
and Basin I think everybody calls it. Um
[1:44:14]
we need to think about all those things.
[1:44:16]
So, you ended up with just more
[1:44:19]
broad 30,000-ft level things, right?
[1:44:21]
Like we want to either import salt or
[1:44:23]
export salt and do these types of things
[1:44:25]
and that. So, I think that was a good
[1:44:27]
change cuz I think originally we were a
[1:44:29]
little more nuanced in what we want to
[1:44:31]
do, but this just gives the direction of
[1:44:32]
like when we should be exporting versus
[1:44:34]
importing and it's just kind of a a good
[1:44:37]
reminder. But Jeff, I guess one other
[1:44:39]
question I have is
[1:44:40]
you know, in the discussion we've had
[1:44:41]
today with this, should we leave it,
[1:44:44]
should we touch it, what do we want to
[1:44:45]
do? Do you feel like the this salinity
[1:44:48]
management plan still kind of stands the
[1:44:50]
test of time and would allow for, you
[1:44:53]
know, whichever way we want to go cuz
[1:44:54]
right now I think we're kind of
[1:44:56]
maybe at the like a neutral position.
[1:44:59]
Yeah.
[1:45:00]
I mean, I I I think the management plan
[1:45:03]
is is
[1:45:05]
fairly general. I think it provides some
[1:45:07]
sideboards.
[1:45:09]
Um
[1:45:10]
I mean, I think, you know, we have the
[1:45:12]
ISOMASS plots that um
[1:45:15]
that Christine's developed. You know,
[1:45:17]
this
[1:45:19]
points more directly toward um you know,
[1:45:21]
if
[1:45:22]
for if
[1:45:23]
you know, what should we do? And so, I
[1:45:26]
mean, just I and this is very crude. I
[1:45:28]
just took the mass that she just
[1:45:30]
reported and and threw a star on here to
[1:45:33]
kind of give you an idea of where we
[1:45:34]
are.
[1:45:35]
So, this gives us an idea that, okay,
[1:45:37]
we're you know, we're right in the
[1:45:38]
middle of the range where we want to be.
[1:45:41]
And and I think last fall we were just
[1:45:43]
below that. So,
[1:45:45]
this give kind of gives us an idea of
[1:45:47]
the trajectory we want where we want to
[1:45:49]
go. And I think more importantly is that
[1:45:52]
if if the lake is fairly stable year to
[1:45:54]
year, it gives us guidelines, kind of
[1:45:57]
direction, a vision of what to do if the
[1:45:58]
lake is declining.
[1:46:00]
You know, here broadly is, you know, we
[1:46:03]
want to reduce salt import or, you know,
[1:46:05]
we want to export more. So, it's pretty
[1:46:08]
So, as we're discussing this, you know,
[1:46:10]
and fine-tuning the berm, um
[1:46:13]
I think the management plan gives us an
[1:46:15]
idea of
[1:46:16]
our, you know, broadly what we can do,
[1:46:19]
but it doesn't give us the input that we
[1:46:21]
need to answer these questions that
[1:46:23]
we're wrestling with right now. Um so,
[1:46:26]
it gives us some sideboards, and but it
[1:46:28]
doesn't give us specifics, which I think
[1:46:30]
is what our goal was.
[1:46:33]
Is we wanted to we wanted to know what
[1:46:35]
are the options? Um what are some
[1:46:38]
things, you know, generally how do we
[1:46:40]
want to move salt um
[1:46:43]
you know, for different conditions. And
[1:46:46]
um
[1:46:47]
And I think it does that.
[1:46:51]
Maybe uh one thing to,
[1:46:53]
you know, say on this is that with the
[1:46:55]
ability and the also the
[1:46:58]
uh
[1:46:59]
you know, the the concept of managing
[1:47:00]
the berm now for more than just salinity
[1:47:03]
and, you know, doing some of these other
[1:47:04]
management activities, I think the
[1:47:06]
salinity management plan, so long as it
[1:47:08]
can kind of stand on its own, like this
[1:47:09]
is kind of a guiding principle that when
[1:47:11]
we're here and the lake is trending in,
[1:47:13]
you know, this direction or this
[1:47:14]
direction, it gives us some thoughts on
[1:47:16]
what we'd want to do to manage salinity,
[1:47:18]
but knowing that there may be other
[1:47:19]
influences, and this is not the
[1:47:21]
playbook, this is the guidebook that
[1:47:23]
kind of says this is how we generally
[1:47:25]
want to move, but there may be other
[1:47:26]
factors or ways that we can manage salt
[1:47:29]
or other things that we need to
[1:47:30]
consider.
[1:47:31]
Um so long as that's you know,
[1:47:33]
understood, I think that's the you know,
[1:47:34]
my my take on this is that it's pretty
[1:47:37]
good and does that.
[1:47:40]
Yeah, any other thoughts
[1:47:43]
from the committee?
[1:47:49]
I guess one thought I had is just we
[1:47:51]
don't I don't think the plan speaks to
[1:47:54]
the fact that there are other variables
[1:47:57]
such as nitrogen or nutrients, and who
[1:48:00]
knows what else comes up in the next 10
[1:48:03]
years. Um
[1:48:05]
and so perhaps adding a caveat
[1:48:08]
to it just to state state that there are other factors that will
[1:48:12]
need to
[1:48:14]
that may need to be considered.
[1:48:16]
Uh and maybe just one other thing too is
[1:48:18]
we may want to consider what frequency
[1:48:20]
we want to revisit this because, you
[1:48:22]
know, having 120 g per liter as our fall
[1:48:26]
target. Um you know, if we find out that
[1:48:29]
nutrients are going to be an issue, then
[1:48:30]
maybe we want to readjust that thought
[1:48:33]
and think about where we want to be.
[1:48:35]
Maybe we want to be a little bit higher
[1:48:36]
so that we lowered the spring, you know,
[1:48:38]
target salinity and also allow for those
[1:48:41]
you know, nutrient um
[1:48:42]
imports.
[1:48:43]
Um
[1:48:45]
I think we should at least make some
[1:48:47]
mention of some of those other variables
[1:48:48]
that we would want to manage for, but
[1:48:50]
also I don't think we need to keep on
[1:48:52]
punting this to the next meeting every
[1:48:54]
time. It may be something we want to,
[1:48:56]
you know, just amend from time to time
[1:48:57]
like we do with our bylaws or our
[1:48:59]
charter or, you know, other things that
[1:49:01]
we do.
[1:49:01]
Right.
[1:49:03]
Jared, do you
[1:49:06]
Is there any harm in
[1:49:08]
I'm sorry, you you just said this, Ben,
[1:49:10]
but is there any harm in in voting on
[1:49:12]
this on in May? The May meeting. Just just so we can kind of all refr-
[1:49:17]
it's it's fresh in my mind.
[1:49:18]
>> Yeah.
[1:49:18]
I I think In the context of this
[1:49:20]
discussion. I don't I don't think
[1:49:21]
there's any harm. I think the one reason
[1:49:23]
that we wanted to get this somewhat
[1:49:25]
wrapped up is we would love to be able
[1:49:26]
to reference this in our management
[1:49:28]
plan. Like we're finishing our CMP, you
[1:49:31]
know, to to not have this finished and
[1:49:34]
have something that we can point to is a
[1:49:36]
little problematic for my my
[1:49:37]
perspective. Um but, you know, May, that
[1:49:40]
puts us into a position where I think we
[1:49:41]
could still do it, right, Jeff? Yeah.
[1:49:43]
So, so long as we didn't have
[1:49:45]
substantial changes. But maybe what we
[1:49:46]
could do is just plan to mail or email
[1:49:49]
this out to the uh committee a couple
[1:49:51]
weeks in advance and give one last
[1:49:53]
chance to look at it. Maybe we can just
[1:49:54]
make those modifications now Yeah. to
[1:49:56]
discuss the need to evaluate nutrients
[1:49:58]
and maybe, you know, re-evaluate this
[1:50:00]
plan every, you know, year or so often
[1:50:03]
to make sure that we're, you know, still
[1:50:06]
uh in accordance with Right. these
[1:50:08]
guiding principles. Right. Okay.
[1:50:10]
I think that'd be good.
[1:50:12]
Okay.
[1:50:13]
Great. Well, um
[1:50:16]
I'll take I'll read through the plan
[1:50:18]
again and just I think you made a great
[1:50:20]
point and you know, we have a specific
[1:50:22]
date I we changed it to October 15th.
[1:50:25]
Um I think Joe made that recommendation
[1:50:28]
last time.
[1:50:29]
And but we can say, you know what, these
[1:50:31]
are principles that should be
[1:50:34]
re-evaluated on a consistent basis and
[1:50:38]
um and I think it would be good to add
[1:50:41]
uh
[1:50:42]
at least note that there are other
[1:50:43]
factors that to be considered other than
[1:50:46]
just salinity.
[1:50:48]
So.
[1:50:50]
I I will do that. I'll get that out
[1:50:52]
to everybody before our next meeting.
[1:50:54]
Um any anything else from anybody on
[1:50:57]
that?
[1:50:59]
If not, let's schedule our next meeting.
[1:51:02]
Um
[1:51:04]
So, the the Issues Forum is the first
[1:51:06]
week of May.
[1:51:09]
And
[1:51:10]
>> going to say that. I she to say that.
[1:51:12]
I'm sorry.
[1:51:13]
Linda, do you have any announcements?
[1:51:23]
So,
[1:51:25]
let me get my calendar out quick. Um
[1:51:28]
so that would is would it be more
[1:51:30]
helpful to have it the last week of
[1:51:32]
April, the week before?
[1:51:38]
Does that give us enough time to
[1:51:40]
actually finish runoff and make the
[1:51:42]
calculations? I would think we'd want to
[1:51:44]
kind of air on the week after, maybe,
[1:51:46]
but
[1:51:48]
happy to do the week before if everybody
[1:51:50]
thinks that's better.
[1:51:53]
I think I mean that gives us there's
[1:51:55]
definitely more time to consider the
[1:51:57]
possibilities there. So, I guess we're looking at the week of
[1:52:01]
May 11th.
[1:52:03]
And
[1:52:05]
um if we keep our traditional
[1:52:08]
Thursdays, you know, that'd be May 14th
[1:52:11]
from 10:00 to 12:00.
[1:52:14]
Does that work for everybody online as
[1:52:16]
well?
[1:52:19]
All right. We will plan on that. We'll
[1:52:22]
get a
[1:52:24]
an announcement out and get the room
[1:52:25]
scheduled and
[1:52:27]
perfect.
[1:52:29]
So,
[1:52:30]
does this
[1:52:32]
I don't know how often this room is
[1:52:33]
available. Does this room work better
[1:52:35]
than the Soldier Hollow?
[1:52:38]
If it's available.
[1:52:41]
Okay.
[1:52:42]
All right. Well, we'll see.
[1:52:46]
if we can we can arrange that
[1:52:48]
for the future. Um
[1:52:50]
depends on
[1:52:51]
who else has the room scheduled. So,
[1:52:55]
great. Anything I guess anything else
[1:52:57]
that we any other action items? Um
[1:53:01]
And just to recap the action items that
[1:53:03]
are
[1:53:04]
have here in my notes is just we the tag
[1:53:06]
meeting on Thurs Thursday
[1:53:09]
or Wednesday, I'm sorry. Um
[1:53:12]
so we'll learn what comes up from the
[1:53:14]
nutrients and
[1:53:18]
I'm just trying to remember if there's a
[1:53:20]
you don't usually publish the summary
[1:53:22]
until the next meeting.
[1:53:25]
Is that
[1:53:27]
I'm just wondering for those who can't
[1:53:28]
make it. Yeah, summary from last meeting
[1:53:30]
should come out tomorrow and then the
[1:53:33]
video recording of tomorrow's meeting
[1:53:35]
will be available before. So.
[1:53:37]
>> All right. So, you'll be able to
[1:53:41]
watch or listen to that if you can't
[1:53:42]
make the meeting on on Wednesday.
[1:53:45]
Um and then we'll also
[1:53:47]
connect to try to figure out how we can
[1:53:49]
model the the berm and see if there's a
[1:53:51]
way we can
[1:53:53]
reconfigure that at all to get to that
[1:53:55]
net zero flux um over the summer.
[1:53:59]
And um and then we've approved um
[1:54:02]
Christine's protocol, so we'll get that
[1:54:05]
And then Andrew is going to look into
[1:54:06]
having UGS publish that.
[1:54:09]
And then I will get some minor modifications to the plan and
[1:54:14]
get that back out to the committee
[1:54:16]
before our next meeting as well.
[1:54:18]
And then lastly, we're meeting on May
[1:54:20]
14th at 10:00 a.m.
[1:54:23]
So.
[1:54:24]
All right. If nothing else, oh, yes,
[1:54:27]
Lynn? I'm finished big, right? Yeah.
[1:54:29]
Okay. I'm sending you an invitation You
[1:54:31]
got a microphone? Oh, so the online
[1:54:33]
folks
[1:54:36]
Thanks.
[1:54:38]
Thank you. Um
[1:54:39]
I'd like to extend an invitation to all
[1:54:41]
of you to come to the Great Salt Lake
[1:54:43]
Issues Forum May 6th, 7th, and 8th on um
[1:54:48]
Thursday, May 7th, first thing in the
[1:54:51]
morning, we're actually having a session
[1:54:54]
that Ben is going to moderate and uh
[1:54:57]
Christine and Phil and Kyle are going to
[1:55:01]
be a part of that and the title is worth
[1:55:03]
its salt. And pretty soon we'll be
[1:55:06]
adding uh
[1:55:07]
nutrients. But anyway, and then Gary is
[1:55:10]
going to be on the same day later on in
[1:55:12]
the afternoon. So, that being said, uh
[1:55:15]
there's a lot more and there's um
[1:55:18]
you know, a great opportunity to get
[1:55:19]
together and talk with others and to uh
[1:55:22]
you know,
[1:55:23]
extend the reach of what this important
[1:55:26]
work and this important commitment that
[1:55:29]
we're all involved with um
[1:55:31]
is is meaning. So, thank you very much.
[1:55:34]
Great.
[1:55:36]
All right, thanks Lynn. Chris? Could I
[1:55:38]
um
[1:55:39]
did we land anywhere with the Lakeside
[1:55:41]
breach? And just like I mean, how can
[1:55:43]
that conversation move forward? Just in
[1:55:45]
keeping in mind that we can't gauge that
[1:55:47]
given current conditions. And from Mike
[1:55:49]
you know, what Mike has said,
[1:55:51]
uh you know, we might need to think
[1:55:52]
about some kind of modification given
[1:55:54]
low lake levels in the South Arm to be
[1:55:56]
able to gauge it. So, I just want to I
[1:55:58]
don't know if we need follow-up there in
[1:55:59]
some fashion um or not. But thought I
[1:56:02]
would remind everybody that that's an
[1:56:03]
issue. Yes.
[1:56:06]
Do you have anything on that, Ben? I I
[1:56:08]
don't have any answers for that. I think
[1:56:09]
that it's really important and I think
[1:56:11]
it'd be awesome to gauge it, but I just
[1:56:13]
think that there's so much happening out
[1:56:15]
there that it may be something we have
[1:56:16]
to incorporate into a
[1:56:17]
like a future project. But right now, I
[1:56:20]
think there's some pretty big priorities
[1:56:22]
like, you know, the protective structure
[1:56:23]
on the berm itself. And I think that
[1:56:26]
would
[1:56:27]
at least in my mind would rise above,
[1:56:29]
you know,
[1:56:30]
the protective structure to um support
[1:56:33]
the gauging out there. So, I I do think
[1:56:34]
that there's a huge opportunity and it's
[1:56:37]
something that we can incorporate into
[1:56:39]
any future work that would happen out
[1:56:40]
there for sure.
[1:56:42]
Yeah.
[1:56:44]
All right, well
[1:56:45]
with that, I'd entertain a motion to
[1:56:47]
adjourn.
[1:56:52]
And Joe, all right. And Thomas second
[1:56:54]
it.
[1:56:55]
Um I'll just assume it's approved. Thank
[1:56:57]
you, everybody.
[1:57:00]
We'll see you May 14th. Actually, we'll
[1:57:02]
see you at the Issues Forum.