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The area burned by wildfires has increased in recent decades and is expected to increase in the future for many watersheds worldwide due to climate change. Burned areas within watersheds increase soil erosion rates, which can increase the downstream accumulation of sediment in rivers and reservoirs. Using an ensemble of climate, fire, and erosion models, we show that post-fire sedimentation is projected to increase for more than ¾ of watersheds by at least 10 % and for more than ¼ of watersheds by at least 100 % by the 2041 to 2050 decade in the western USA. In this region, 65 % of the water supply originates from forested lands that are prone to wildfire, and many of the watersheds with projected increases in sedimentation...
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The NE CASC Fellows Program is a training initiative to develop skills in engagement, communication, and collaboration to help inform climate change adaptation for natural and cultural resources management. Students and postdocs from the NE CASC consortium universities make up the fellows cohort and hail from diverse disciplines, including ecology, engineering, and earth and environmental sciences. Our common goal is to fulfill the mission of the NE CASC, which is to deliver science to help wildlife, ecosystems, and people adapt to a changing climate. Our challenge is to identify and build relationships with stakeholder partners to collaboratively design research that will meet their climate adaptation needs.
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The NE CASC consortium convenes three workshops that explore high-priority adaptation research topics emerging from our stakeholder networks and current DOI priorities. Workshops provide a platform to foster a collaborative community of scientists and managers, invite sharing and discussion of partner needs, and cross-disciplinary development and application of NE CASC-supported research, information, and data products. Year 1: Biological Thresholds in the Context of Climate Change (proceedings) Year 2: Future of Aquatic Flows (proceedings) Year 3: Climate-Adaptive Population Supplementation (proceedings)
Spring‐fed wetlands are ecologically important habitats in arid and semi‐arid regions. Springs have been suggested as possible hydrologic refugia from droughts and climate change; however, springs that depend on recent precipitation or snowmelt for recharge may be vulnerable to warming and drought intensification. Springs that are expected to maintain their ecohydrologic function in a warmer, drier climate may be priorities for conservation and restoration. Identifying such springs is difficult because many springs lack hydrologic records of adequate temporal extent and resolution to assess their resilience to water cycle changes. This study demonstrates proof‐of‐concept for the assessment of certain spring types...


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