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Declining groundwater storage expected to amplify mountain streamflow reductions in a warmer world

Authors: Carroll, R. W. H.; Niswonger, R.; Ulrich, C.ORCID; Varadharajan, C.ORCID; Siirila-Woodburn, E. R.ORCID; Williams, K. H.ORCID
Year: 2024
Journal: Nature Water, Vol. 2, pp. 419-433
DOI: 10.1038/s44221-024-00239-0

Abstract

Abstract Groundwater interactions with mountain streams are often simplified in model projections, potentially leading to inaccurate estimates of streamflow response to climate change. Here, using a high-resolution, integrated hydrological model extending 400 m into the subsurface, we find groundwater an important and stable source of historical streamflow in a mountainous watershed of the Colorado River. In a warmer climate, increased forest water use is predicted to reduce groundwater recharge resulting in groundwater storage loss. Losses are expected to be most severe during dry years and cannot recover to historical levels even during simulated wet periods. Groundwater depletion substantially reduces annual streamflow with intermittent conditions predicted when precipitation is low. Expanding results across the region suggests groundwater declines will be highest in the Colorado Headwater and Gunnison basins. Our research highlights the tight coupling of vegetation and groundwater dynamics and that excluding explicit groundwater response to warming may underestimate future reductions in mountain streamflow.

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References (74)

12 in Knowledge Hub, 62 external

Publication

Statistical framework to assess long-term spatio-temporal climate changes: East River mountainous watershed case study

2023Stoch. Environ. Res. Risk Assess.DOI: 10.1007/s00477-022-02327-7
Publication

Modeling snow dynamics and stable water isotopes across mountain landscapes

2022Geophys. Res. Lett.DOI: 10.1029/2022GL098780
Publication

Variability in observed stable water isotopes in snowpack across a mountainous watershed in Colorado

2022Hydrol. Process.DOI: 10.1002/hyp.14653
Publication

Surface parameters and bedrock properties covary across a mountainous watershed: Insights from machine learning and geophysics

2022Sci. Adv.DOI: 10.1126/sciadv.abj2479
Publication

The Colorado East River Community Observatory Data Collection

2021Hydrol. Process.DOI: 10.1002/hyp.14243
Publication

Baseflow Age Distributions and Depth of Active Groundwater Flow in a Snow Dominated Mountain Headwater Basin

2020Water Resour. Res.DOI: 10.1029/2020WR028161
Publication

Resolution matters when modeling climate change in headwaters of the Colorado River

2020Environ. Res. Lett.DOI: 10.1088/1748-9326/aba77f
Publication

Efficiency of the Summer Monsoon in Generating Streamflow Within a Snow-Dominated Headwater Basin of the Colorado River

2020Geophys. Res. Lett.DOI: 10.1029/2020GL090856
Publication

The East River, Colorado, Watershed: A mountainous community testbed for improving predictive understanding of multiscale hydrological-biogeochemical dynamics

2018Vadose Zone J.DOI: 10.2136/vzj2018.03.0061
Publication

Factors Controlling Seasonal Groundwater and Solute Flux from Snow-Dominated Basins

2018Hydrol. Process.DOI: 10.1002/hyp.13151
Dataset

QA/QC-ed Groundwater Level Time Series in PLM-1 and PLM-6 Monitoring Wells, East River, Colorado

DOI: 10.15485/1866836
Dataset

East River Watershed Stable Water Isotope Data in Precipitation, Snowpack and Snowmelt 2016-2020

DOI: 10.15485/1824223