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FY2013This project retrieves four years of data from over 200 temperature sensors nested within 28 sites across ~40 million hectares of the hydrographic Great Basin. The sensors span all major aspects and up to 700 m of elevation within sites, and occur in numerous management jurisdictions in 18 mountain ranges plus other areas not in ranges. This project: Quantifies the variability of climate at micro-, meso-, and macroscales across the Basin, and across diel, seasonal, and interannual periods. Informs management and conservation efforts, in terms of helping calibrate and refine the climatic stage upon which all biological actors and efforts hinge (Beier and Brost 2010). Feeds into other bioclimatic and wildlife...
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Tags: 2013,
2014,
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Great Basin,
Great Basin,
Great Basin,
Great Basin,
Great Basin Landscape Conservation Cooperative,
LCC,
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Nevada,
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Earth is experiencing widespread ecological transformation in terrestrial, freshwater, and marine ecosystems that is attributable to directional environmental changes, especially intensifying climate change. To better steward ecosystems facing unprecedented and lasting change, a new management paradigm is forming, supported by a decision-oriented framework that presents three distinct management choices: resist, accept, or direct the ecological trajectory. To make these choices strategically, managers seek to understand the nature of the transformation that could occur if change is accepted while identifying opportunities to intervene to resist or direct change. In this article, we seek to inspire a research agenda...
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Alaska and Canada’s hundreds of millions of acres of public protected lands are large and currently well-connected, but will face pressures. Providing for landscape connectivity is a core climate adaptation strategy. But shifting treelines, species compositions, and climates make planning for future corridors difficult.Dr. Dawn Magness from the Kenai National Wildlife Refuge uses a method that relies on enduring feature of the landscape that climate change will not change.The project is a collaboration between the NWB LCC and the Kenai National Wildlife Refuge.The geodiversity approach uses topography to define landscape features. Topography can be a proxy for ecological function. For example, topography influences...
Categories: Data;
Tags: Academics & scientific researchers,
Conservation NGOs,
Data,
Federal resource managers,
LANDSCAPE, All tags...
LANDSCAPE,
LANDSCAPE ECOLOGY,
LANDSCAPE ECOLOGY,
LANDSCAPE PROCESSES,
LCC Network Science Catalog,
Northwest Boreal Landscape Conservation Cooperative data.gov,
Policy makers & regulators,
Private land owners,
Regional & county planners,
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Tribes,
biota,
boundaries,
completed,
environment,
geoscientificInformation, Fewer tags
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Alaska and Canada’s hundreds of millions of acres of public protected lands are large and currently well-connected, but will face pressures. Providing for landscape connectivity is a core climate adaptation strategy. But shifting treelines, species compositions, and climates make planning for future corridors difficult.Dr. Dawn Magness from the Kenai National Wildlife Refuge uses a method that relies on enduring feature of the landscape that climate change will not change.The project is a collaboration between the NWB LCC and the Kenai National Wildlife Refuge.The geodiversity approach uses topography to define landscape features. Topography can be a proxy for ecological function. For example, topography influences...
Categories: Data;
Tags: Academics & scientific researchers,
Conservation NGOs,
Data,
Federal resource managers,
LANDSCAPE, All tags...
LANDSCAPE,
LANDSCAPE ECOLOGY,
LANDSCAPE ECOLOGY,
LANDSCAPE PROCESSES,
LCC Network Science Catalog,
Northwest Boreal Landscape Conservation Cooperative data.gov,
Policy makers & regulators,
Private land owners,
Regional & county planners,
State agencies,
Tribes,
biota,
boundaries,
completed,
environment,
geoscientificInformation, Fewer tags
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The geodiversity approach uses topography to define landscape features. Topography can be a proxy for ecological function. For example, topography influences the solar radiation available for plants and animals, the soil characteristics through the likelihood for erosion and deposition, and the characteristics of hydrologic features. Therefore, similar geodiversity types should have the potential for similar ecological function even as the climate changes. We classified the landscape into three topographic feature categories: canyons, ridges, and slopes. Each topographic feature was then clustered into distinct geodiversity types. Slopes were clustered into groups using elevation, slope angle, and yearly solar radiation....
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Project;
Tags: Academics & scientific researchers,
Conservation Design,
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Federal resource managers,
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Monitoring,
Policy makers & regulators,
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