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FY2016This project will evaluate the effects of vegetation treatments on population connectivity, genetic diversity and gene flow of wildlife species across the full extent of the Great Basin LCC. The recently approved BLM and Forest Service Land Use Plan Amendments will implement millions of acres of treatments in support of greater sage-grouse conservation. It is essential to evaluate the potential benefits and risks of these treatments on the connectivity and fragmentation of the landscape for multiple non-target species. We will use a dynamic landscape model to simulate fire and treatments, allowing each to vary by type (e.g., juniper removal, prescribed fire), extent, and influence on vegetation and fuels....
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Academics & scientific researchers, Applications and Tools, CA1, CA1, CA1, All tags...
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FY2015This effort complements a project, supported by the Joint Fire Science Program, to explore relations among cheatgrass-driven fire, climate, and sensitive-status birds across the Great Basin. With support from the NW and SW Climate Science Centers and the GB CESU, we aim to engage managers at local, state, and regional levels, and to involve both field-level and director-level personnel, during all stages of the proposed project. Our methods of engagement are intended to save managers time and decrease some of the uncertainty in planning and decision-making rather than to create additional pressures on managers time. We will conduct field visits, workshops, and interactive briefings to build trust and increase...
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Overview Climate change is likely to impact erosion rates, the magnitude and frequency of extreme rainfall/mass wasting events, and the accumulation of sediment in coastal areas. However, long-term rates of erosion and sediment delivery to coastal systems are poorly constrained and there is limited understanding of the relative effects of climate change versus land-use change on these processes. Furthermore, existing instrumental and historical observations are inadequate for constraining the frequency of extreme events and evaluating the potential for changes in the magnitude and frequency of these events through time. This project will bolster two distinct but related research projects: (1) an ongoing study...
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Overview This project examines the ecological impacts of several introduced and expanding forest insects and diseases on forest habitats across the northeastern US and upper Lake States region. To address these novel threats, this work applies large-scale, co-developed experimental studies documenting impacts of ash mortality from emerald ash borer on lowland black ash communities in the Lake States and northern hardwood forests in New England; regional assessments of the impacts of the climate change-mediated expansion of southern pine beetle into northeastern pine barren communities; and ecological characterizations of areas experiencing suppression efforts to reduce the spread of the introduced Asian long-horned...
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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. Understanding which coastal lands will be vulnerable to sea-level rise is critical for policy makers, land-use planners, and coastal residents. Focusing on the coastal region from Virginia to Maine, researchers examined a range of different possible sea-level rise scenarios, combined with information on features of the coastal...


    map background search result map search result map Evaluating Sea-level Rise Impacts in the Northeastern U.S. Effects of Treatments on the Connectivity and Fragmentation of Wildlife Populations across the Great Basin Engagement of Managers and Researchers on Relations among Cheatgrass-driven Fire, Climate, and Sensitive-status Birds across the Great Basin Climate Change Impacts on Erosion, Mass Wasting, and the Supply of Sediment to Tidal Wetlands in the Northeast Impacts and Adaptation Strategies for Invasive Forest Insects and Diseases in the Northeast Climate Change Impacts on Erosion, Mass Wasting, and the Supply of Sediment to Tidal Wetlands in the Northeast Effects of Treatments on the Connectivity and Fragmentation of Wildlife Populations across the Great Basin Engagement of Managers and Researchers on Relations among Cheatgrass-driven Fire, Climate, and Sensitive-status Birds across the Great Basin Evaluating Sea-level Rise Impacts in the Northeastern U.S. Impacts and Adaptation Strategies for Invasive Forest Insects and Diseases in the Northeast