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Species and Habitat Vulnerability Assessments of Appalachian Species and Habitats
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Future climate change adaptation and mitigation strategies will be dependent on the best available projections of how the regional climate will change and the impacts those changes will have on the region’s natural and cultural resources. Understanding the vulnerability of various species and habitats to climate change within the Appalachian LCC is of critical importance for making effective conservation decisions. The AppLCC funded a Climate Change Vulnerability Assessment research project that addresses several factors: 1) how the Cooperative should acquire information about the climate vulnerability of Appalachian species and habitats to develop vulnerability assessments for a suite of key species and habitats to share with partners; 2) compilation of known vulnerability assessments of species and habitats, and 3) new climate change vulnerability assessments of selected species and habitats in the AppLCC region.
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Stetson University
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Founded in 1883, Stetson University is a nationally ranked private university with four colleges and schools located across the I-4 corridor in Central Florida.
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Stoleson, Scott
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Stream Classification System for the Appalachian LCC
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Funded Projects
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Stream Impacts from Water Withdrawals in the Marcellus Shale Region
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A new study from the Appalachian Landscape Conservation Cooperative (LCC) and Cornell University looks at how the region's surface freshwater supply – and the health of natural systems delivering this resource – have been impacted and may be altered in the coming years under increasing water withdrawals.
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News & Events
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Stream Impacts from Water Withdrawals in the Marcellus Shale Region
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The Appalachian LCC provided a grant to Cornell University Environmental Engineers to study how the region’s surface freshwater supply – and the health of natural systems delivering this resource – have been impacted and may be altered in the coming years under increasing water withdrawals.
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Funded Projects
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Study: Subseasonal Forecasts Provide a Powerful Tool for Protecting Whales
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Effective management of marine mammal populations threatened by man-made impacts is particularly challenging for marine environments. Not only are these environments highly dynamic and difficult to observe, previous static management approaches have proven problematic or ineffective in marine environments, particularly for highly migratory species or for species undergoing distributional shifts due to climate change.
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Climate Links
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Synthesis of climate model downscaling products for the southeastern United States
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Downscaling translates large-scale climate information to the local scale. There are several techniques for handling this process; recently, several downscaled climate products have been produced by government and academic researchers. Ecologists, conservation scientists, and practitioners require such local guidance to evaluate adaptation and conservation strategies. However, the large number of methods involved, different downscaling approaches, resolutions, time periods, and focal variables limits the ability of these users to form meaningful conclusions and evaluate the results of adaptation strategies. To address these issues, this project will summarize the methods used for downscaling, identify the metrics most appropriate for evaluation of climate model skill and usability for the ecological and conservation communities in the southeastern US, and begin a longer-term effort to evaluate the range of downscaled climate products over this geographic region.
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Research
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The Effects of Livestock Grazing on the Bog Turtle
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The demise of small-scale dairy farming over the past three decades has led to the pastoral abandonment of the majority of bog turtle habitats in the Northeast. As a consequence, habitats are being degraded by the growth of invasive flora, changes in hydrology, and the loss of turtle microhabitats created by livestock.
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Peer-reviewed Science
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The GigaFire Project
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The GigaFire Project is a set of interconnected research projects focused on quantifying the state and dynamics of wildland fuels as well as the impacts of varying fuel managements on fire severity, long-term carbon sequestration, and water quality.
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Projects
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Fire Mapping/Remote Sensing