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Washington Water Science Center

The USGS Washington Water Science Center provides water resource information. You’ll find information about Washington’s rivers and streams, as well as groundwater, water quality, and cutting-edge water research. We welcome you to explore our data and scientific research.

News

Washington Waters Newsletter - Spring 2025

Washington Waters Newsletter - Spring 2025

New data products now available in StreamStats

New data products now available in StreamStats

U.S. Geological Survey scientists measure what often remains invisible – groundwater in the southeast Puget Sound region

U.S. Geological Survey scientists measure what often remains invisible – groundwater in the southeast Puget Sound region

Publications

Fiber-optic distributed temperature sensing of hydrologic processes—Diverse deployments and new applications by the U.S. Geological Survey

Fiber-optic distributed temperature sensing instruments harness the temperature-dependent properties of glass to measure temperature continuously along optical fibers by using precise pulses of laser light. In the mid-2000s, this technology was refined for environmental monitoring purposes such as snowpack-air exchange, groundwater/surface-water exchange, and lake-water stratification...
Authors
Martin A. Briggs, David M. Rey, Chad C. Opatz, Neil C. Terry, Connor P. Newman, Lance R. Gruhn, Carole D. Johnson

Advancing the science of headwater streamflow for global water protection

The protection of headwater streams faces increasing challenges, exemplified by limited global recognition of headwater contributions to watershed resiliency and a recent US Supreme Court decision limiting federal safeguards. Despite accounting for ~77% of global river networks, the lack of adequate headwaters protections is caused, in part, by limited information on their extent and...
Authors
Heather E. Golden, Jay Christiensen, Hilary McMillan, Christa A. Kelleher, Charles R. Lane, Admin Husic, Li Li, Adam S. Ward, John C. Hammond, Erin C. Seybold, Kristin Jaeger, Margaret Ann Zimmer, Roy Sando, C. Nathan Jones, Catalina Segura, D. Tyler Mahoney, Adam N. Price, Frederick Chang

Quantifying fine sediment infiltration in spawning gravel used by Chinook salmon (Oncorhynchus tshawytscha) in the Sauk River Basin, Washington, 2018–21

Fine sediment can infiltrate into river substrate that salmonid fish species (Oncorhynchus spp.) use to spawn. High levels of sediment infiltration can increase egg-to-fry mortality, which corresponds to the period when salmonids are still residing in the subsurface gravels. This study quantifies fine sediment infiltration of Chinook salmon (Oncorhynchus tshawytscha) spawning habitat...
Authors
Kristin L. Jaeger, Scott W. Anderson, Anya C. Leach, Scott T. Morris

Science

Hydrodynamics and sedimentation in bull trout spawning habitats affected by reservoir management in the Cedar River Municipal Watershed, WA

Reservoir operations have the potential to impact bull trout spawning habitat in the Cedar River. The USGS seeks to understand potential impacts by performing bathymetric, hydrometric, and sediment surveys.
link

Hydrodynamics and sedimentation in bull trout spawning habitats affected by reservoir management in the Cedar River Municipal Watershed, WA

Reservoir operations have the potential to impact bull trout spawning habitat in the Cedar River. The USGS seeks to understand potential impacts by performing bathymetric, hydrometric, and sediment surveys.
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Lake Washington Ship Canal Sustainable Rivers Project

The U.S. Geological Survey (USGS) and the U.S. Army Corps of Engineers (USACE) are refining a water quality model to better understand temperature and salinity dynamics in the Lake Washington Ship Canal and evaluate conditions for migrating salmon. This effort supports the Sustainable Rivers Program, balancing navigation, water management, and ecosystem health.
link

Lake Washington Ship Canal Sustainable Rivers Project

The U.S. Geological Survey (USGS) and the U.S. Army Corps of Engineers (USACE) are refining a water quality model to better understand temperature and salinity dynamics in the Lake Washington Ship Canal and evaluate conditions for migrating salmon. This effort supports the Sustainable Rivers Program, balancing navigation, water management, and ecosystem health.
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Characterizing water and sediment quality to support watershed management and fish hatchery operations near Clarks Creek, WA

The USGS is working with local water managers to characterize water and sediment quality in a fish hatchery. For the past few years, large numbers of salmon eggs raised in the hatchery have perished unexpectedly. Resource managers need information about the water, sediment and organic material found in the hatchery and surrounding watershed. The USGS is using novel techniques to learn what is in...
link

Characterizing water and sediment quality to support watershed management and fish hatchery operations near Clarks Creek, WA

The USGS is working with local water managers to characterize water and sediment quality in a fish hatchery. For the past few years, large numbers of salmon eggs raised in the hatchery have perished unexpectedly. Resource managers need information about the water, sediment and organic material found in the hatchery and surrounding watershed. The USGS is using novel techniques to learn what is in...
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