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Other Landscapes

Landscapes such as drylands, sagebrush, and even underground networks of caves are impacted by climate change. CASC scientists use a variety of research tools to understand how these unique landscapes are altered by factors such as drought or sea level rise. Learn more about their work below. 

Filter Total Items: 195

Informing the Management and Coordination of Water Resources in the Rio Grande Basin

Understanding how to manage scarce water during drought is one of the great challenges we face as a society, particularly for communities in the Rio Grande Basin. Severe drought coupled with human development have profoundly impacted the quantity and quality of water in the basin. Running through Colorado, New Mexico, Texas, and Mexico, the Rio Grande is a multi-national resource that is...
Informing the Management and Coordination of Water Resources in the Rio Grande Basin

Informing the Management and Coordination of Water Resources in the Rio Grande Basin

Understanding how to manage scarce water during drought is one of the great challenges we face as a society, particularly for communities in the Rio Grande Basin. Severe drought coupled with human development have profoundly impacted the quantity and quality of water in the basin. Running through Colorado, New Mexico, Texas, and Mexico, the Rio Grande is a multi-national resource that is managed
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Projecting the Frequency and Impact of Future Coastal Flooding and Inundation Events in the Pacific Islands

Increasing numbers of hazardous inundation events due to climate change is a serious threat to the culture, habitat, and infrastructure of the Hawaiian and U.S.-Affiliated Pacific Islands. The information currently available to stakeholders, however, is primarily confined to maximum or mean water level and does not include how often incursions are likely to occur. We propose to quantify...
Projecting the Frequency and Impact of Future Coastal Flooding and Inundation Events in the Pacific Islands

Projecting the Frequency and Impact of Future Coastal Flooding and Inundation Events in the Pacific Islands

Increasing numbers of hazardous inundation events due to climate change is a serious threat to the culture, habitat, and infrastructure of the Hawaiian and U.S.-Affiliated Pacific Islands. The information currently available to stakeholders, however, is primarily confined to maximum or mean water level and does not include how often incursions are likely to occur. We propose to quantify the effect
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Protecting Cultural Resources in the Face of Climate Change

Climate change doesn’t just threaten our natural resources—it threatens our cultural resources, too. Cultural resources represent evidence of past human activity, such as archeological sites, or are of significance to a group of people traditionally associated with the resource, such as Native American ceremonial sites. Climate change is challenging the long-term persistence of many...
Protecting Cultural Resources in the Face of Climate Change

Protecting Cultural Resources in the Face of Climate Change

Climate change doesn’t just threaten our natural resources—it threatens our cultural resources, too. Cultural resources represent evidence of past human activity, such as archeological sites, or are of significance to a group of people traditionally associated with the resource, such as Native American ceremonial sites. Climate change is challenging the long-term persistence of many cultural
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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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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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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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Supporting Strategic Landscape Conservation Decisions in the U.S. Caribbean

The Caribbean Landscape Conservation Cooperative (CLCC) Steering Committee (SC) recently made two landmark decisions providing direction for collaborative conservation efforts. The SC agreed to pursue landscape conservation design (LCD) as a major emphasis of collaborative work and they agreed to adopt a values-focused, structured decision-making (SDM) process to guide conservation...
Supporting Strategic Landscape Conservation Decisions in the U.S. Caribbean

Supporting Strategic Landscape Conservation Decisions in the U.S. Caribbean

The Caribbean Landscape Conservation Cooperative (CLCC) Steering Committee (SC) recently made two landmark decisions providing direction for collaborative conservation efforts. The SC agreed to pursue landscape conservation design (LCD) as a major emphasis of collaborative work and they agreed to adopt a values-focused, structured decision-making (SDM) process to guide conservation design
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The Impact of Drought on Waterbirds and Their Wetland Habitats in California’s Central Valley

California’s Central Valley is a nexus for water resources in the state, draining the Sacramento and San Joaquin River watersheds. Urban centers, agricultural operations, and the environment all compete for limited water, and demand is expected to only increase as the population grows and agriculture intensifies. At the same time, the water supply is projected to decrease as temperatures...
The Impact of Drought on Waterbirds and Their Wetland Habitats in California’s Central Valley

The Impact of Drought on Waterbirds and Their Wetland Habitats in California’s Central Valley

California’s Central Valley is a nexus for water resources in the state, draining the Sacramento and San Joaquin River watersheds. Urban centers, agricultural operations, and the environment all compete for limited water, and demand is expected to only increase as the population grows and agriculture intensifies. At the same time, the water supply is projected to decrease as temperatures rise
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Understanding Sediment Transport to Coastal Waters and Coral Reefs in West Maui

Coral ecosystems of West Maui support a vibrant tourism industry and provide tangible economic benefits to the community. Hawaiian nearshore reefs generate about $800 million in annual revenue, not including the ecosystem services they provide - such as critical habitat for diverse fish species and buffering coasts from storm surges. The Hawaiian economy depends on healthy coral...
Understanding Sediment Transport to Coastal Waters and Coral Reefs in West Maui

Understanding Sediment Transport to Coastal Waters and Coral Reefs in West Maui

Coral ecosystems of West Maui support a vibrant tourism industry and provide tangible economic benefits to the community. Hawaiian nearshore reefs generate about $800 million in annual revenue, not including the ecosystem services they provide - such as critical habitat for diverse fish species and buffering coasts from storm surges. The Hawaiian economy depends on healthy coral ecosystems, yet
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Assessing the Potential Effects of Climate Change on Vegetation in Hawaiʻi Volcanoes National Park

Climate change in Hawaiʻi is expected to result in increasing temperatures and varying precipitation through the twenty-first century. Already, high elevation areas have experienced rapidly increasing temperatures and there has been an increase in the frequency of drought across the Islands. These climatic changes could have significant impacts on Hawaiʻi’s plants and animals. Changes in
Assessing the Potential Effects of Climate Change on Vegetation in Hawaiʻi Volcanoes National Park

Assessing the Potential Effects of Climate Change on Vegetation in Hawaiʻi Volcanoes National Park

Climate change in Hawaiʻi is expected to result in increasing temperatures and varying precipitation through the twenty-first century. Already, high elevation areas have experienced rapidly increasing temperatures and there has been an increase in the frequency of drought across the Islands. These climatic changes could have significant impacts on Hawaiʻi’s plants and animals. Changes in
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