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Water

Explore our projects on water.

Filter Total Items: 426

Climate-Driven Changes to Forested Wetland Inundation Dynamics: Implications for Frogs and Toads

Project Overview Wetlands in forested areas of the Upper Midwest provide vital habitat for amphibians, but changing patterns of drying under climate change can disrupt species reproduction and growth. Researchers supported by this Midwest CASC project will use water depth sensor data, machine learning models, and long-term amphibian surveys to predict wet and dry periods for wetlands...
Climate-Driven Changes to Forested Wetland Inundation Dynamics: Implications for Frogs and Toads

Climate-Driven Changes to Forested Wetland Inundation Dynamics: Implications for Frogs and Toads

Project Overview Wetlands in forested areas of the Upper Midwest provide vital habitat for amphibians, but changing patterns of drying under climate change can disrupt species reproduction and growth. Researchers supported by this Midwest CASC project will use water depth sensor data, machine learning models, and long-term amphibian surveys to predict wet and dry periods for wetlands under future
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Coastal Responses to Sea-Level Rise: Landscape-Scale Understanding in an Uncertain Future

Rising sea levels and frequent intense storms are rapidly changing Northeastern US coastal landscapes and threatening the vital ecosystem services they provide. Researchers supported by this Northeast CASC project will use landscape models, co-developed with coastal managers and tribal managers, to predict expected coastal changes for different environments (e.g., beaches, wetlands...
Coastal Responses to Sea-Level Rise: Landscape-Scale Understanding in an Uncertain Future

Coastal Responses to Sea-Level Rise: Landscape-Scale Understanding in an Uncertain Future

Rising sea levels and frequent intense storms are rapidly changing Northeastern US coastal landscapes and threatening the vital ecosystem services they provide. Researchers supported by this Northeast CASC project will use landscape models, co-developed with coastal managers and tribal managers, to predict expected coastal changes for different environments (e.g., beaches, wetlands, rocky
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Coastal Wetland Dynamics and Impacts on Hurricane Flood Risk along the Texas Gulf Coast in a Changing Climate

Project Overview Wetlands along the Gulf Coast are crucial for reducing hurricane-induced flooding and as habitat for diverse wildlife, but are threatened by rising sea levels, climate change, and coastal development. Using remote sensing data, future climate data, and numerical models, researchers from this South Central CASC-supported project will collaborate with local expert groups...
Coastal Wetland Dynamics and Impacts on Hurricane Flood Risk along the Texas Gulf Coast in a Changing Climate

Coastal Wetland Dynamics and Impacts on Hurricane Flood Risk along the Texas Gulf Coast in a Changing Climate

Project Overview Wetlands along the Gulf Coast are crucial for reducing hurricane-induced flooding and as habitat for diverse wildlife, but are threatened by rising sea levels, climate change, and coastal development. Using remote sensing data, future climate data, and numerical models, researchers from this South Central CASC-supported project will collaborate with local expert groups to create
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Designing Climate-Resilient Stormwater Management in Northeastern US Cities to Support Stream Ecosystems

Current stormwater management infrastructure and strategies in the northeastern US are built around historical weather data and not the weather that is expected with climate change, like more frequent extreme rainfall. This matters because stormwater can introduce pollution to streams and can cause flooding. Researchers supported by this Northeast CASC project will combine climate data...
Designing Climate-Resilient Stormwater Management in Northeastern US Cities to Support Stream Ecosystems

Designing Climate-Resilient Stormwater Management in Northeastern US Cities to Support Stream Ecosystems

Current stormwater management infrastructure and strategies in the northeastern US are built around historical weather data and not the weather that is expected with climate change, like more frequent extreme rainfall. This matters because stormwater can introduce pollution to streams and can cause flooding. Researchers supported by this Northeast CASC project will combine climate data, stormwater
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Does Less Ice Cover Lead to More Turbulent Overwinter Conditions on Great Lakes Fish Spawning Reefs?

Project Overview Declining winter ice cover in the Great Lakes can affect how winds and waves influence coldwater fish reproduction on reefs, as ice cover may shield fish from these forces. Researchers supported by this Midwest CASC project will measure water movement and ice cover in Lake Erie to model future scenarios, helping fishery managers in the region make habitat restoration and...
Does Less Ice Cover Lead to More Turbulent Overwinter Conditions on Great Lakes Fish Spawning Reefs?

Does Less Ice Cover Lead to More Turbulent Overwinter Conditions on Great Lakes Fish Spawning Reefs?

Project Overview Declining winter ice cover in the Great Lakes can affect how winds and waves influence coldwater fish reproduction on reefs, as ice cover may shield fish from these forces. Researchers supported by this Midwest CASC project will measure water movement and ice cover in Lake Erie to model future scenarios, helping fishery managers in the region make habitat restoration and fish
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Evaluating Climate-related Threats and Conservation Strategies for the Cascade Red Fox in Washington

The endangered Cascade red fox, native to Washington’s southern Cascades, faces threats from climate change, habitat loss, and coyotes, which are both competitors and predators. Researchers supported by this Northwest CASC project will track Cascade red fox population sizes, movement, habitat use, and survival using GPS collars. They will use the collected data in collaboration with...
Evaluating Climate-related Threats and Conservation Strategies for the Cascade Red Fox in Washington

Evaluating Climate-related Threats and Conservation Strategies for the Cascade Red Fox in Washington

The endangered Cascade red fox, native to Washington’s southern Cascades, faces threats from climate change, habitat loss, and coyotes, which are both competitors and predators. Researchers supported by this Northwest CASC project will track Cascade red fox population sizes, movement, habitat use, and survival using GPS collars. They will use the collected data in collaboration with state, federal
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Evaluating the Vulnerability of Indigenous Shell Middens and Marsh Habitat Diversity to Sea Level Rise

Project Overview Coastal marshes in the Gulf of America host diverse ecological communities and hold Native American cultural artifacts within shell mounds (middens). However, both are vulnerable to erosion and submergence due to rising sea levels and more frequent severe storms. Researchers supported by this Southeast CASC project will develop a risk-assessment tool to evaluate the...
Evaluating the Vulnerability of Indigenous Shell Middens and Marsh Habitat Diversity to Sea Level Rise

Evaluating the Vulnerability of Indigenous Shell Middens and Marsh Habitat Diversity to Sea Level Rise

Project Overview Coastal marshes in the Gulf of America host diverse ecological communities and hold Native American cultural artifacts within shell mounds (middens). However, both are vulnerable to erosion and submergence due to rising sea levels and more frequent severe storms. Researchers supported by this Southeast CASC project will develop a risk-assessment tool to evaluate the vulnerability
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Ghuts, Grit, and Gills: Aquatic Data Synthesis for Climate Adaptation in the US Virgin Islands

The US Virgin Islands are vulnerable to sea level rise, intense storms, and unpredictable rainfall brought by climate change. These changes influence the health of freshwater streams (known as “ghuts”), sedimentation, erosion and water quality (“grit”), as well as aquatic communities and ecosystems (“gills”) that are unique to the islands and important for indigenous peoples’ heritage...
Ghuts, Grit, and Gills: Aquatic Data Synthesis for Climate Adaptation in the US Virgin Islands

Ghuts, Grit, and Gills: Aquatic Data Synthesis for Climate Adaptation in the US Virgin Islands

The US Virgin Islands are vulnerable to sea level rise, intense storms, and unpredictable rainfall brought by climate change. These changes influence the health of freshwater streams (known as “ghuts”), sedimentation, erosion and water quality (“grit”), as well as aquatic communities and ecosystems (“gills”) that are unique to the islands and important for indigenous peoples’ heritage, local
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Hydrologic Futures Web Tool Development Project

Project Overview Many websites that visualize climate change data can often be confusing and misleading to decision makers when they are researching information to devise management plans for water, wildlife, and other natural resources. Researchers supported by this Alaska CASC project will improve the ability of biologists, water managers, and other resource managers to effectively and
Hydrologic Futures Web Tool Development Project

Hydrologic Futures Web Tool Development Project

Project Overview Many websites that visualize climate change data can often be confusing and misleading to decision makers when they are researching information to devise management plans for water, wildlife, and other natural resources. Researchers supported by this Alaska CASC project will improve the ability of biologists, water managers, and other resource managers to effectively and
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Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Project Overview Climate change and human activities are threatening many sensitive aquatic species in prairie streams across the Great Plains region. Researchers supported by this North Central CASC project will combine and analyze data collected independently by Great Plains states to identify thresholds of environmental change that may lead to species loss and changes in aquatic...
Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Project Overview Climate change and human activities are threatening many sensitive aquatic species in prairie streams across the Great Plains region. Researchers supported by this North Central CASC project will combine and analyze data collected independently by Great Plains states to identify thresholds of environmental change that may lead to species loss and changes in aquatic communities
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Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Project Overview In Northwest Alaska, “rusting rivers” are becoming increasingly apparent as climate change causes ancient spring seeps to re-emerge after permafrost melts. While they have become more common over the past few years, very little is understood about their impacts on stream food webs. Researchers supported by this Alaska CASC project will bridge the knowledge gap by...
Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Project Overview In Northwest Alaska, “rusting rivers” are becoming increasingly apparent as climate change causes ancient spring seeps to re-emerge after permafrost melts. While they have become more common over the past few years, very little is understood about their impacts on stream food webs. Researchers supported by this Alaska CASC project will bridge the knowledge gap by providing
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Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Project Overview: Native Yellowstone cutthroat trout and mountain whitefish in the Greater Yellowstone Ecosystem (GYA) are ecologically and socio-economically important species, but are threatened by drought, rising water temperatures, habitat loss, and non-native species. Researchers supported by this North Central CASC project will use climate data and extensive population records to...
Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Project Overview: Native Yellowstone cutthroat trout and mountain whitefish in the Greater Yellowstone Ecosystem (GYA) are ecologically and socio-economically important species, but are threatened by drought, rising water temperatures, habitat loss, and non-native species. Researchers supported by this North Central CASC project will use climate data and extensive population records to assess the
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