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Water, Coasts and Ice

Warming temperatures and shifting weather patterns are causing major changes in water and ice availability, sea levels, and aquatic nutrient cycles across the country. CASC-supported scientists are examining how water, ice, and coastal ecosystems and communities across the country are being affected by climate change. Explore our science on this topic below. 

Filter Total Items: 425

Evaluating Sea-level Rise Impacts in the Northeastern U.S.

In 2010, 39 percent of the U.S.population lived near the coast. This population is expected to increase by 8 percent from 2010 to 2020. Coastal regions are also home to species and habitats that provide critical services to humans, such as wetlands that buffer coasts from storms. Therefore, sea-level rise and the associated changes in coastlines challenge both human communities and...
Evaluating Sea-level Rise Impacts in the Northeastern U.S.

Evaluating Sea-level Rise Impacts in the Northeastern U.S.

In 2010, 39 percent of the U.S.population lived near the coast. This population is expected to increase by 8 percent from 2010 to 2020. Coastal regions are also home to species and habitats that provide critical services to humans, such as wetlands that buffer coasts from storms. Therefore, sea-level rise and the associated changes in coastlines challenge both human communities and ecosystems
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Evaluating the Impacts of Climate Extremes on Karst Hydrology and Species Vulnerability

Karst aquifers—formed when the movement of water dissolves bedrock—are critical groundwater resources in North America. Water moving through these aquifers carves out magnificent caves, sinkholes, and other formations. These formations are home to high concentrations of rare and endangered species, but the hydrological conditions that support these species can change rapidly. Managing...
Evaluating the Impacts of Climate Extremes on Karst Hydrology and Species Vulnerability

Evaluating the Impacts of Climate Extremes on Karst Hydrology and Species Vulnerability

Karst aquifers—formed when the movement of water dissolves bedrock—are critical groundwater resources in North America. Water moving through these aquifers carves out magnificent caves, sinkholes, and other formations. These formations are home to high concentrations of rare and endangered species, but the hydrological conditions that support these species can change rapidly. Managing these
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Evaluating the Use of Models for Projecting Future Water Flow in the Southeast

Assessing the impact of flow alteration on aquatic ecosystems has been identified as a critical area of research nationally and in the Southeast U.S. This project aimed to address the Ecohydrology Priority Science Need of the SE CSC FY2012 Annual Science Work Plan by developing an inventory and evaluation of current efforts and knowledge gaps in hydrological modeling for flow-­‐ecology...
Evaluating the Use of Models for Projecting Future Water Flow in the Southeast

Evaluating the Use of Models for Projecting Future Water Flow in the Southeast

Assessing the impact of flow alteration on aquatic ecosystems has been identified as a critical area of research nationally and in the Southeast U.S. This project aimed to address the Ecohydrology Priority Science Need of the SE CSC FY2012 Annual Science Work Plan by developing an inventory and evaluation of current efforts and knowledge gaps in hydrological modeling for flow-­‐ecology science in
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From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

The Gulf of Alaska is one of the most productive marine ecosystems on Earth, supporting salmon fisheries that alone provide nearly $1 billion per year in economic benefits to Southeast Alaska. Glaciers are central to many of the area’s natural processes and economic activities, but the rates of glacier loss in Alaska are among the highest on Earth, with a 26-36 percent reduction in total...
From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

The Gulf of Alaska is one of the most productive marine ecosystems on Earth, supporting salmon fisheries that alone provide nearly $1 billion per year in economic benefits to Southeast Alaska. Glaciers are central to many of the area’s natural processes and economic activities, but the rates of glacier loss in Alaska are among the highest on Earth, with a 26-36 percent reduction in total volume
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Improving Groundwater Supply Forecasting in the Southwestern U.S.

Changing climate conditions have been identified as a major threat to the sustainability and availability of water resources in the Southwestern U.S. Long-term decreases in precipitation can lead to reductions in regional groundwater levels and loss of groundwater storage in aquifers for some communities. Reduced precipitation can also lead to lower water levels in streams and losses in...
Improving Groundwater Supply Forecasting in the Southwestern U.S.

Improving Groundwater Supply Forecasting in the Southwestern U.S.

Changing climate conditions have been identified as a major threat to the sustainability and availability of water resources in the Southwestern U.S. Long-term decreases in precipitation can lead to reductions in regional groundwater levels and loss of groundwater storage in aquifers for some communities. Reduced precipitation can also lead to lower water levels in streams and losses in the
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Making Terrestrial and Wetland Habitat Maps Useful for Adaptation Planning

A number of large-scale mapping projects have been completed in the U.S., and several cover all or some parts of the footprint of the Northeast Climate Science Center (NE CSC). These include maps by the Southeast GAP Analysis (SEGAP) program, the national LANDFIRE program, NatureServe, and The Nature Conservancy. These mapping projects represent a major step forward in describing the...
Making Terrestrial and Wetland Habitat Maps Useful for Adaptation Planning

Making Terrestrial and Wetland Habitat Maps Useful for Adaptation Planning

A number of large-scale mapping projects have been completed in the U.S., and several cover all or some parts of the footprint of the Northeast Climate Science Center (NE CSC). These include maps by the Southeast GAP Analysis (SEGAP) program, the national LANDFIRE program, NatureServe, and The Nature Conservancy. These mapping projects represent a major step forward in describing the current
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Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Spatial data depicting marsh types (e.g. fresh, intermediate, brackish and saline) for the north-central Gulf of America coast are inconsistent across the region, limiting the ability of conservation planners to model the current and future capacity of the coast to sustain priority species. The goal of this study was to (1) update the resolution of coastal Texas vegetation data to match...
Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Spatial data depicting marsh types (e.g. fresh, intermediate, brackish and saline) for the north-central Gulf of America coast are inconsistent across the region, limiting the ability of conservation planners to model the current and future capacity of the coast to sustain priority species. The goal of this study was to (1) update the resolution of coastal Texas vegetation data to match that of
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Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Over 50% of commercial and recreationally important fish species depend on coastal wetlands. In the Pacific Northwest, coastal wetlands, where the ocean meets the land, are highly productive areas that support a wealth of wildlife species from salmon to ducks. The tidal marshes, mudflats, and shallow bays of coastal estuaries link marine, freshwater, and terrestrial habitats and provide...
Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Over 50% of commercial and recreationally important fish species depend on coastal wetlands. In the Pacific Northwest, coastal wetlands, where the ocean meets the land, are highly productive areas that support a wealth of wildlife species from salmon to ducks. The tidal marshes, mudflats, and shallow bays of coastal estuaries link marine, freshwater, and terrestrial habitats and provide economic
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Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Snow is extremely important to a wide range of natural processes in Alaska. Snow cover helps regulate the earth’s temperature and stores water on the landscape. As it melts, snow hydrates the soil and replenishes the freshwater supplies of streams and lakes, providing water for vegetation, wildlife, and human activities such as agriculture and electricity generation. Understanding...
Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Snow is extremely important to a wide range of natural processes in Alaska. Snow cover helps regulate the earth’s temperature and stores water on the landscape. As it melts, snow hydrates the soil and replenishes the freshwater supplies of streams and lakes, providing water for vegetation, wildlife, and human activities such as agriculture and electricity generation. Understanding present and
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Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

The western coast of Alaska is a remote region, rich in wildlife and providing critical nesting habitat for many of Alaska’s seabirds. It is also home to indigenous communities who rely upon the region’s natural resources to support a traditional lifestyle of hunting, gathering, and fishing. Although the region is frequently subject to extensive inland flooding from Bering Sea storms...
Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

The western coast of Alaska is a remote region, rich in wildlife and providing critical nesting habitat for many of Alaska’s seabirds. It is also home to indigenous communities who rely upon the region’s natural resources to support a traditional lifestyle of hunting, gathering, and fishing. Although the region is frequently subject to extensive inland flooding from Bering Sea storms, little is
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Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Wetlands provide critical services to natural and human communities alike, forming important wildlife habitat, storing and filtering water, sequestering carbon, and offering opportunities for recreation. Unfortunately, not only are these valuable ecosystems understudied compared to others, but they are also among the most sensitive to climate change. Climate change threatens wetlands by...
Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Wetlands provide critical services to natural and human communities alike, forming important wildlife habitat, storing and filtering water, sequestering carbon, and offering opportunities for recreation. Unfortunately, not only are these valuable ecosystems understudied compared to others, but they are also among the most sensitive to climate change. Climate change threatens wetlands by altering
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Modeling Western Alaska Coastal Hazards

The western coastline of Alaska is highly susceptible to coastal storms, which can cause erosion, flooding, and saltwater storm surge, affecting natural ecosystems, human communities, and commercial activity. Historically, a large buffer of ice along the shoreline has protected this region from some of the more severe effects of coastal storms. However, climate change may not only...
Modeling Western Alaska Coastal Hazards

Modeling Western Alaska Coastal Hazards

The western coastline of Alaska is highly susceptible to coastal storms, which can cause erosion, flooding, and saltwater storm surge, affecting natural ecosystems, human communities, and commercial activity. Historically, a large buffer of ice along the shoreline has protected this region from some of the more severe effects of coastal storms. However, climate change may not only increase the
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