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Assessing future hydrologic extremes using an integrated hydrology and river operations model in the Russian River watershed

January 6, 2026

Study region

The Russian River watershed, situated in coastal, northern California, experiences hydrologic extremes, including periodic droughts and flooding. Water managers are working to maintain sustainable water supplies and environmental flows, while mitigating flood risks.

Study focus

This paper introduces an integrated hydrology and river operations model for the Russian River watershed. This model is distinct from models in previous studies because it represents surface-groundwater interactions and uses climate forcings to estimate dynamic water use demands that are superimposed onto both reservoir operations and water supply constraints. The model was used to examine three historical (1990–2015) and eight future (2016–2099) water use and climate change scenarios.

New hydrological insights for the region

The direct connection between streams and aquifers facilitated both annual aquifer replenishment by high winter streamflows and streamflow depletion by groundwater wells (19 % of pumped groundwater in alluvial aquifers from stream leakage) during critical low flow periods. Simulated streamflow changes included 59 % longer and 54 % more severe streamflow droughts, 26 % lower seasonal low streamflows, and up to 125 % higher peak streamflows, averaged over future climate and water use scenarios, suggesting increased future flood and water availability risks. Results showed the importance of reservoir operations for mitigating the impacts of increased hydroclimatic volatility, despite a decrease in reservoir reliability at Lake Mendocino, suggesting that reservoir management may be used to decrease future risks.

Publication Year 2026
Title Assessing future hydrologic extremes using an integrated hydrology and river operations model in the Russian River watershed
DOI 10.1016/j.ejrh.2025.103016
Authors Saalem Tilahun Adera, Ayman H. Alzraiee, Richard G. Niswonger, Enrique Triana, Derek W. Ryter, John A. Engott
Publication Type Article
Publication Subtype Journal Article
Series Title Journal of Hydrology: Regional Studies
Index ID 70273363
Record Source USGS Publications Warehouse
USGS Organization California Water Science Center
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