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Filters: Categories: Project (X) > partyWithName: North Pacific Landscape Conservation Cooperative (X) > partyWithName: USGS - Forest and Rangeland Ecosystem Science Center (X)

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We will translate existing modeled hydroclimatic data into metrics used for water crossing design and replacement. WDFW permits (Hydraulic Code Rules, Chapter 220-110 WAC) and provides technical guidance for construction of hundreds of fish passable culverts, a number which is expected to rise dramatically in response to a 2013 federal court injunction directing the state to repair thousands of culverts that inhibit salmon migration. Current WDFW design guidance does not account for changes in hydrology resulting from climate change. This project will support the development of designs that maintain desired performance (e.g. connectivity benefits to aquatic organisms) throughout water crossings expected life.This...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: 2014, Academics & scientific researchers, Anadromous fish, Applications and Tools, Climate Change, All tags...
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This project builds upon existing data and collaborations to incorporate climate change and economic considerations into a decision support framework for prioritizing restoration of passage. Planned outcomes will help guide on-the-ground decisions in terms of adapting to anticipated climate effects, allocating limited resources for restoration, and providing tools that can be adapted across the NPLCC and beyond.
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: 2013, Applications and Tools, Applications and Tools, Climate Change, Conservation Planning, All tags...
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This project will assess impacts of climate change on stream resources by considering the role of thermal heterogeneity and altered hydrologic regimes. The project will look at streams in Washington, Oregon, and California to develop a case study that stream stewards and conservation planners can use to assess vulnerability for Pacific salmon.Successful adaptation strategies for freshwater biota will consider how spatial patterns in water temperature may respond to climate change. Using remotely sensed spatially continuous maximum water temperature data for~ 30 large rivers throughout the lower portion of the NPLCC, we will map locations of cold water patches, identify potential hydroclimatic and landscape drivers,...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: 2014, Academics & scientific researchers, Anadromous fish, Applications and Tools, California, All tags...


    map background search result map search result map Prioritizing restoration and enhancement of passage at stream-road crossings for aquatic vertebrates in the face of changing hydrologic regimes in the NPLCC An Applied Case Study to Integrate Climate Change into Design and Permitting of Water Crossing Structures Incorporating Spatial Heterogeneity in Temperature into Climate Vulnerability Assessments for Coastal Pacific Streams An Applied Case Study to Integrate Climate Change into Design and Permitting of Water Crossing Structures Prioritizing restoration and enhancement of passage at stream-road crossings for aquatic vertebrates in the face of changing hydrologic regimes in the NPLCC Incorporating Spatial Heterogeneity in Temperature into Climate Vulnerability Assessments for Coastal Pacific Streams