Technical Support for Partners
Technical Support for Partners
Explore our projects that are providing technical support to partners.
Filter Total Items: 806
Intermittent Stream Risk Assessment: Mapping Patterns of Stream Drying and Identifying Vulnerabilities of Stream Fish and Crayfish Communities to Drying
Small creeks and streams often dry out during the summer but still support many insects, fish, crayfish, and plants. Though intermittent streams are the most common type of flowing water across the globe, not much is known about which, how, why, or when streams dry or about how patterns of drying affect species in these habitats. More information about patterns of stream drying can help...
Interpreting Global Change Impacts on Southern Rocky Mountain Alpine and Subalpine Ecosystems for Effective Resource Management
Project Overview Human fossil fuel use and agricultural practices have increased atmospheric nitrogen deposits (e.g., through snow and rain) to mountain ecosystems. This, along with increasing measurable climate warming is affecting soil and water acidity and altering nutrient balances. In this project, North Central CASC-supported researchers will analyze decades of unexplored data...
Lauhala: Weaving Knowledges and Practices with a Climate Resilient and Culturally Significant Plant on Hawaiʻi Island
Hala is a much-loved plant by Native Hawaiian cultural practitioners and lauhala weavers, yet native coastal forests of hala are now considered rare in Hawai'i. Research on climate resilience indicates that hala has the potential to mitigate storm surges and act as a barrier between salt spray and crops growing near the shoreline. To provide opportunities for natural and cultural...
Megafire Risk Evaluation System (MERES) for the Southern Great Plains
Characterized by their extreme size, intensity, and severity, megafires are the most destructive, dangerous, and costly wildfires in the U.S. Over the past two decades, megafires have become more frequent in Oklahoma and Texas along with increasing extreme weather events and changes to fuel types caused by woody plant encroachment into grasslands. As climate change and woody plant...
Modeling Large Fires in Response to Potential Tipping Points in Fuel Dryness
Wildfire burn areas are increasing in the western U.S., a change that has been linked to increased fuel aridity caused by climate change. Recognizing that there will likely be even more large fires in the future presents an opportunity to prepare and adapt to the expected climatic changes. This project addresses three key science questions: 1) Is there a specific level (threshold) of...
Northwest Climate Adaptation Science Center Consortium- Hosted by University of Washington (2023-2027)
The Northwest Climate Adaptation Science Center (NW CASC) delivers science to help fish, wildlife, water, land and people adapt to a changing climate. The NW CASC is hosted by the University of Washington in partnership with Affiliated Tribes of Northwest Indians, Boise State University, Northwest Indian College, Oregon State University, Portland State University, the University of...
Planning Grant: Understanding the Impacts of Extreme Events on Our National Parks: Past, Present, and Future
The United States National Park Service (NPS) declared climate change as “the greatest threat to the integrity of our national parks that we have ever experienced.” Climate change is causing not only higher average temperatures in most places but also increasing the severity of storms, the number of heatwaves and wildfires, and causing heavier rainfall. These extreme weather conditions...
Post-fire Vegetation Transitions in Burned and Reburned Forests in the Western Cascades
Climatic warming has contributed to recent increases in severe wildfires across the Pacific Northwest (PNW). Following severe wildfire, a burned forest has an increased likelihood of burning again within several decades, which can greatly alter vegetation recovery. These changes are of increasing concern to forest managers, conservationists, researchers, the public, and culture bearers...
Prioritizing Sites for Habitat Restoration to Enhance Connectivity in the Upper Midwest
Species are adapted to particular environmental conditions, but are threatened as climate change shifts habitat conditions. One way species can respond is by moving to new suitable locations, known as climate-driven range shifts. But some species can move more easily and/or more quickly than others, and some landscapes are more difficult to cross. In the upper Midwest, the movement...
Projecting the Distribution of Aquatic Species of Greatest Conservation Need Throughout the Mid-Atlantic Region
Climate and land use change are affecting many aquatic species throughout Maryland, Pennsylvania, Virginia, and West Virginia. The objective of this project is to understand and plan for the changes in distribution of aquatic species considered “Regional Species of Greatest Conservation Need” (RSGCN) in the mid-Atlantic region. Working with state and federal partners, this project will...
Rendering High-Resolution Hydro-Climatic Data for Southern California
Natural resource managers and researchers often need long-term averages of historical and future climate scenarios for their study area yet may not have the resources to make these summaries. This project will provide high quality, detailed maps of historical and projected future climate and hydrologic conditions for California and a finer scale version for southern California. The...
Restoring Texas Coastal Wetlands: Decision Support for the Beneficial Use of Dredged Material
Coastal wetland loss is a serious concern along the northern Gulf of America, especially in Texas and Louisiana where rates of wetland loss and relative sea-level rise are among the highest in the world, extreme storms are becoming more frequent, and flooding events are intensifying. Because coastal wetlands of the northern Gulf Coast provide numerous ecosystem services, including...