Hydrological Restoration of Rincon Bayou, Nueces Marsh...Oct 17, 2016 · increased estuary...
Transcript of Hydrological Restoration of Rincon Bayou, Nueces Marsh...Oct 17, 2016 · increased estuary...
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Hydrological Restoration of
Rincon Bayou, Nueces Marsh
Paul Montagna, Crystal Chaloupka, Elizabeth DelRosario, Amanda Gordon, Terry Palmer,
and Evan Turner
Drought - 4 Apr 96Flood - 2 Jul 97
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Prelude
Data presented here originates from manyprojects funded by BOR, CCC, CBBEP TWDB, and HRI
This presentation is based on Final Reports to CBBEP and TWDB: Montagna, P.A., C. Chaloupka, E.
DelRosario, A. Gordon, and E.L. Turner. 2016. Effects on Benthic Macrofauna from Pumped Flows to Rincon Bayou. Final Report to the Coastal Bend Bays & Estuaries Program for Project # 1617. Harte Research Institute, Texas A&M University-Corpus Christi, Corpus Christi, Texas, 61 pp.
Montagna, P.A., L. Adams, C. Chaloupka, E. DelRosario, R.D. Kalke, and E.L. Turner. 2016. Determining Optimal Pumped Flows to Nueces Delta. Final Report to the Texas Water Development Board, Contract # 1548311787. Harte Research Institute, Texas A&M University-Corpus Christi, Corpus Christi, Texas, 75 p.
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Nueces River entering Nueces Bay
Nueces River entering Nueces Bay
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Nueces Estuary
Near Corpus Christi, Texas
Semi-arid climate, water shortages in dry years
Reverse estuary
REDFISHBAY
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Kilometers
N
Approximate Scale
0
NUECES DELTA
NUECES BAY
OSO BAY
CorpusChristi
AransasPass
CORPUS CHRISTI BAY
REDFISHBAY
AransasBay
Gulf of Mexico
LagunaMadre
Texas
NUECES
ESTUARY
Nueces RiverREDFISH
BAY
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Kilometers
N
Approximate Scale
0
NUECES DELTA
NUECES BAY
OSO BAY
CorpusChristi
AransasPass
CORPUS CHRISTI BAY
REDFISHBAY
AransasBay
Gulf of Mexico
LagunaMadre
Texas
NUECES
ESTUARY
REDFISHBAY
5
Kilometers
N
Approximate Scale
0
NUECES DELTA
NUECES BAY
OSO BAY
CorpusChristi
AransasPass
CORPUS CHRISTI BAY
REDFISHBAY
AransasBay
Gulf of Mexico
LagunaMadre
Texas
NUECES
ESTUARY
Nueces River
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Nueces Bay
Nueces River
Frio River
Atascosa River
Corpus Christi Bay
Nueces Basin is about 4.3 million ha
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Nueces River
Frio River
Atascosa River
Wesley Seale
Dam
1982: Choke Canyon Dam (CC)
700,000 acre-ft storage capacity
(Basin total of ~1,000,000 acre-ft).
Choke Canyon
Dam
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Hydrologic Restoration
1996-2000 – Nueces Overflow Channel
Small bit of water decreased salinity and increased estuary structure and function
2000 – Channel closed
2001 – Channel opened
Nueces Overflow Channel
Nueces River
Rincon
Bayou
River
Delta
Bay Gulf0-1
21-28
15-30 30-36
Salinity Gradient in Components After Channel
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Rincon Bayou Pipeline
2009 - City of Corpus Christi completed
construction to pass-through the first 3,000
acre-ft (3,700,440 m3) per month from the
Calallen Pool to Rincon Bayou7
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Rincon Pipeline Location
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Figure 1. Salinity gradient (i.e., difference between downstream SALT03 and upstream NUDE2) and pumping event daily totals May 2009 to December
2015. The Rincon Bayou pipeline became operation in September 2009, and width of the box indicating pumping duration.
Salinity GradientConversion to a Positive Estuary
The salinity gradient = upstream (NUDE2) -downstream (SALT03)
Negative estuary condition
Salinity at SALT03 < Salinity at NUDE2
Positive estuary condition
Salinity at SALT03 > Salinity at NUDE2
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Pumping, Flow, Salinity
Initially flow went upstream
Backflow preventer added
July 2014
Washed out July 201510
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Long-Term Salinity Change
Previous hypersaline conditions reduced
since 2009 when pump began operation
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Rincon Pipeline Pumping
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Benthic Epifauna Diversity
Diversity is low because of frequent salinity swings, which cause disturbances
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Epifauna Communities
Push nets used to sample fish and invertebrates
Salinity gradient from left to right
Skipjack at lowest salinity and sheepshead at highest13
A-917=Elops saurus (skipjack), B-912=Brevoortia patronus (menhaden),
C-910=Menida beryllina (silverside), D-915=Cyprinodon varigatus (sheepshead minnow)
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Benthic Infauna Diversity
Sediment cores for infauna
Only 12 infauna species total, compared to 100’s in the bay
Average about 4 per sample date 14
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Infauna Community Structure
Chironomid larvae dominate when salinity is low, and Streblospio benedicti dominate when salinity is high
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Benthic Infauna Diversity
Diversity peaks with salinity between 4 psuand 10 psu
Diversity peaks with water depth around 10 cm 16
Turner and Montagna (2016) Max Bin Method
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Calculate Optimal Salinities
Metric Chironomidae larvae Streblospio bendicti
Abundance 1.3 psu, 9 cm 13.5 psu, 12 cm
Biomass 1.8 psu, 8 cm 14.1 psu, 12 cm
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Turner and Montagna
(2016) Max Bin Method
IN PRESS
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Modelling Benthic Communities
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Predicting species
responses from
physical changes
in Rincon Bayou
65 % to 81 %
accuracy
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Calculate Flow Needed to
Maintain Salinity
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Optimal Pumping
Pumping controls salinity and water depth
Based on indicators, 0.41 m3/s (29 ac-ft/day) would maintain optimal salinity and depth for bioindicators
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Conclusions
Rincon Bayou is a disturbed environment exhibiting low diversity and constant community state shifts with wet and dry periods
While hydrological restoration has helped Rincon Bayou, more changes are necessary Inflows should be a trickle, not a flood
Releases should be continuous and not haphazard
Specifically:• Only one pump should be used at a time, which will take
about 24 days (at 126 ac-ft/d) to deliver 3,000 ac-ft/month
• Releases should not be timed for end of month because that requires 3 pumps over a short time period making floods worse
• Releases should not be dependent on pass-through requirements because you need them most during dry periods 21
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Acknowledgements
Coastal Bend Bays & Estuaries Program
Texas Water Development Board
Harte Research Institute
Too many colleagues, students, postdocs, and technicians to mention since 1994
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Questions?
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