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Projects by Region

Each region of the country contains its own unique ecosystems, communities, and cultural values. Regional CASCs work with partners to develop products that address specific climate adaptation needs of wildlife, ecosystems, and people in the states within their footprints. Browse our projects by region below or use our Project Explorer database to explore our science.

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Quantifying Future Precipitation in the South Central U.S. for Water Resources Planning

The South Central U.S. is home to diverse climates and ecosystems, strong agricultural and energy sectors, and fast-growing urban areas. All share a critical need for water, which is becoming an increasingly scarce resource across the region as aquifers are overdrawn and populations grow. Understanding what brings rain to this region, and how the timing and amount of precipitation may be...
Quantifying Future Precipitation in the South Central U.S. for Water Resources Planning

Quantifying Future Precipitation in the South Central U.S. for Water Resources Planning

The South Central U.S. is home to diverse climates and ecosystems, strong agricultural and energy sectors, and fast-growing urban areas. All share a critical need for water, which is becoming an increasingly scarce resource across the region as aquifers are overdrawn and populations grow. Understanding what brings rain to this region, and how the timing and amount of precipitation may be affected
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Regional Graduate Student and Early Career Researcher Training II

Investigating the complex natural and cultural resource management challenges we face today requires building diverse, interdisciplinary research teams. Robust stakeholder engagement is also critical for ensuring that publicly funded science answers questions that are relevant to natural and cultural resource management decisions. Early career scientists who learn how to engage with...
Regional Graduate Student and Early Career Researcher Training II

Regional Graduate Student and Early Career Researcher Training II

Investigating the complex natural and cultural resource management challenges we face today requires building diverse, interdisciplinary research teams. Robust stakeholder engagement is also critical for ensuring that publicly funded science answers questions that are relevant to natural and cultural resource management decisions. Early career scientists who learn how to engage with multi
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Relations Among Cheatgrass, Fire, Climate, and Sensitive-Status Birds across the Great Basin

The distribution and abundance of cheatgrass, an invasive annual grass native to Eurasia, has increased substantially across the Intermountain West, including the Great Basin. Cheatgrass is highly flammable, and as it has expanded, the extent and frequency of fire in the Great Basin has increased by as much as 200%. These changes in fire regimes are associated with loss of the native...
Relations Among Cheatgrass, Fire, Climate, and Sensitive-Status Birds across the Great Basin

Relations Among Cheatgrass, Fire, Climate, and Sensitive-Status Birds across the Great Basin

The distribution and abundance of cheatgrass, an invasive annual grass native to Eurasia, has increased substantially across the Intermountain West, including the Great Basin. Cheatgrass is highly flammable, and as it has expanded, the extent and frequency of fire in the Great Basin has increased by as much as 200%. These changes in fire regimes are associated with loss of the native sagebrush
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Response of High Mountain Ecosystems in the Great Basin to Historic and Future Climate Change

Mountain ecosystems are at risk from climate change and may be experiencing accelerated warming relative to lower environments. Understanding climatic and ecosystem processes at meso-, topo-, and micro-scales is limited, and constrains our ability to accurately evaluate vulnerability, and assess responses under future climates. Of special interest for climate studies are upper subalpine...
Response of High Mountain Ecosystems in the Great Basin to Historic and Future Climate Change

Response of High Mountain Ecosystems in the Great Basin to Historic and Future Climate Change

Mountain ecosystems are at risk from climate change and may be experiencing accelerated warming relative to lower environments. Understanding climatic and ecosystem processes at meso-, topo-, and micro-scales is limited, and constrains our ability to accurately evaluate vulnerability, and assess responses under future climates. Of special interest for climate studies are upper subalpine forests
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River’s End: Mapping Patterns of Stream Drying in the Western United States

Water in the western United States is disappearing, and several states are facing severe water shortages as drought conditions worsen. Many streams are drying up, and there is growing concern that this trend will only continue as climate change produces warmer and drier conditions. The loss of stream ecosystems has far reaching ecological, social, and economic implications. Species that...
River’s End: Mapping Patterns of Stream Drying in the Western United States

River’s End: Mapping Patterns of Stream Drying in the Western United States

Water in the western United States is disappearing, and several states are facing severe water shortages as drought conditions worsen. Many streams are drying up, and there is growing concern that this trend will only continue as climate change produces warmer and drier conditions. The loss of stream ecosystems has far reaching ecological, social, and economic implications. Species that depend on
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Science to Action (S2A) Fellowship (2024 to Present)

The mission of the US Geological Survey’s National Climate Adaptation Science Center (NCASC) is to provide managers, policy-makers, and other stakeholders with information and decision-making tools to respond to effects of climate change on natural resources. In support of this goal, the NCASC wishes to support an exceptional mentoring experience for graduate students from select partner
Science to Action (S2A) Fellowship (2024 to Present)

Science to Action (S2A) Fellowship (2024 to Present)

The mission of the US Geological Survey’s National Climate Adaptation Science Center (NCASC) is to provide managers, policy-makers, and other stakeholders with information and decision-making tools to respond to effects of climate change on natural resources. In support of this goal, the NCASC wishes to support an exceptional mentoring experience for graduate students from select partner
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Science to Action Fellowship (S2A) (2015 - 2023)

The mission of the US Geological Survey’s National Climate Adaptation Science Center (NCASC) is to provide managers, policy-makers, and other stakeholders with information and decision-making tools to respond to effects of climate change on natural resources. In support of this goal, the NCASC wishes to support an exceptional mentoring experience for graduate students from select partner
Science to Action Fellowship (S2A) (2015 - 2023)

Science to Action Fellowship (S2A) (2015 - 2023)

The mission of the US Geological Survey’s National Climate Adaptation Science Center (NCASC) is to provide managers, policy-makers, and other stakeholders with information and decision-making tools to respond to effects of climate change on natural resources. In support of this goal, the NCASC wishes to support an exceptional mentoring experience for graduate students from select partner
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Science to Inform the Reconnection of Floodplains and Restoration of Green Space to Minimize Risk in the Future

This project identifies opportunities to manage flows, connections, and landscapes to increase the resilience of human communities and ecosystems. This research identifies dynamic and adaptive solutions to managing river flows that allow continued provision of valuable infrastructure services such as flood control, hydropower, and water supply, while also supporting thriving river...
Science to Inform the Reconnection of Floodplains and Restoration of Green Space to Minimize Risk in the Future

Science to Inform the Reconnection of Floodplains and Restoration of Green Space to Minimize Risk in the Future

This project identifies opportunities to manage flows, connections, and landscapes to increase the resilience of human communities and ecosystems. This research identifies dynamic and adaptive solutions to managing river flows that allow continued provision of valuable infrastructure services such as flood control, hydropower, and water supply, while also supporting thriving river ecosystems -
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Soil Moisture-Based Drought Monitoring for the South Central Region

Soil moisture is a critical variable for understanding the impacts of drought on ecological, hydrological, and agricultural systems. Yet, key research gaps currently prevent existing soil moisture measurements from being used to assess drought conditions and mitigate drought impacts such as wildfire outbreaks, lost agricultural production, and degraded wildlife habitat. In fact, most...
Soil Moisture-Based Drought Monitoring for the South Central Region

Soil Moisture-Based Drought Monitoring for the South Central Region

Soil moisture is a critical variable for understanding the impacts of drought on ecological, hydrological, and agricultural systems. Yet, key research gaps currently prevent existing soil moisture measurements from being used to assess drought conditions and mitigate drought impacts such as wildfire outbreaks, lost agricultural production, and degraded wildlife habitat. In fact, most scales used
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Support for the Affiliated Tribes of Northwest Indians Tribal Leaders Summit on Climate Change

Tribal communities’ traditions, identities, and economies rely heavily on local natural resources, making tribes especially vulnerable to climate change impacts, including changes in seasonal patterns and the potential loss of culturally and economically important species. The goal of this project was to build tribal capacity in the Pacific Northwest to successfully plan for and adapt to...
Support for the Affiliated Tribes of Northwest Indians Tribal Leaders Summit on Climate Change

Support for the Affiliated Tribes of Northwest Indians Tribal Leaders Summit on Climate Change

Tribal communities’ traditions, identities, and economies rely heavily on local natural resources, making tribes especially vulnerable to climate change impacts, including changes in seasonal patterns and the potential loss of culturally and economically important species. The goal of this project was to build tribal capacity in the Pacific Northwest to successfully plan for and adapt to the
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Support for the Sixth Annual Northwest Climate Conference

The Northwest Climate Conference (formerly called the Pacific Northwest Climate Science Conference) is the premier climate science event for the region, providing a forum for researchers and practitioners to share scientific results and discuss challenges and solutions related to the impacts of climate change on people, natural resources, and infrastructure in the Northwest. Conference
Support for the Sixth Annual Northwest Climate Conference

Support for the Sixth Annual Northwest Climate Conference

The Northwest Climate Conference (formerly called the Pacific Northwest Climate Science Conference) is the premier climate science event for the region, providing a forum for researchers and practitioners to share scientific results and discuss challenges and solutions related to the impacts of climate change on people, natural resources, and infrastructure in the Northwest. Conference
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Supporting a Collaborative Regional Assessment of Future Climate Impacts on Natural Resources in the Pacific Islands

In order to better document, manage, and adapt to the impacts of future climate variability and change on diverse natural resources in Hawaiʻi and the US Affiliated Pacific Islands (USAPI), several regional climate research programs including the Pacific RISA, the PICCC, the NOAA RCSD, and the East-West Center came together in 2011-2012 to collaboratively produce the Pacific Islands...
Supporting a Collaborative Regional Assessment of Future Climate Impacts on Natural Resources in the Pacific Islands

Supporting a Collaborative Regional Assessment of Future Climate Impacts on Natural Resources in the Pacific Islands

In order to better document, manage, and adapt to the impacts of future climate variability and change on diverse natural resources in Hawaiʻi and the US Affiliated Pacific Islands (USAPI), several regional climate research programs including the Pacific RISA, the PICCC, the NOAA RCSD, and the East-West Center came together in 2011-2012 to collaboratively produce the Pacific Islands Regional
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