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Static flood inundation boundary extents were created along the entire shoreline of Lake Ontario in Cayuga, Jefferson, Monroe, Niagara, Orleans, Oswego, and Wayne Counties in New York by using recently acquired (2007, 2010, 2014, and 2017) light detection and ranging (lidar) data. The flood inundation maps, accessible through the USGS Flood Inundation Mapping Program website at https://www.usgs.gov/mission-areas/water-resources/science/flood-inundation-mapping-fim-program, depict estimates of the areal extent and water depth of shoreline flooding in 8 segments corresponding to adjacent water-surface elevations (stages) at 8 USGS lake gages on Lake Ontario. This item includes data sets for segment A - Lake Ontario...
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Without reliable spatial data for wetland and riparian areas, it is impossible for land managers to accurately assess the distribution of critical aquatic habitats and model potential impacts caused by climate change. Wetlands in the Southern Rockies are particularly important for wildlife habitat, as they are often far more productive than the surrounding uplands. In addition, wetlands are an integral component of regional hydrologic cycles through their role in flood abatement, storm water retention, groundwater recharge, and water quality improvement.Colorados wetlands were mapped by the FWS early 1980 and in late 1990, and though the maps exist, they were created for print and most are not useful as digital...
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Most of the photographs used for geologic mapping were acquired by the departing spacecraft during the first pass (Mercury I). The Mercury II encounter provided no usable images of the map area; two low-oblique photographs suitable for geologic mapping were acquired during the third flyby on March 17, 1975 (Davies and others, 1978, p. 31). No stereoscopic phtographic pairs are available for the Borealis region.
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This map shows current and near-term terrestrial intactness, as well as long term potential for development and climate change. These datasets are the results of a series of fuzzy logic models that integrate many landscape factors, including urban, agriculture, roads, invasive vegetation, and fire regime.
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This map shows long-term potential for climate change, which was calculated using a logic model to integrate the factors of: vegetation change summer & winter temperature change annual precipitation change runoff change.
This map shows the potential current distribution of Colorado River Cutthroat Trout as well as current and near-term status, and long term potential for change (due to climate change).
This map shows the current and historic distribution of this ecosystem, in the context of change agents and disturbance types, as well as current and near-term status and long term potential for change. This map includes current distribution from LANDFIRE EVT and NatureServe Landcover, and historic distribution from LANDFIRE BpS.
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This map shows climate parameters and MAPSS biogeography model data for the western US from PRISM (1968-1999), and future climate projections from the regional climate model RegCM3 using ECHAM5, GENMOM, and GFDL projections as boundary conditions for 2015-2030, and 2045-2060.
This map shows soil factors that may contribute to wind or water erosion, derived from STATSGO and SSURGO soil data and slope information.
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This map shows areas dominated by major invasive vegetation species (tamarisk and cheatgrass), compiled from multiple source datasets including LANDFIRE existing vegetation type, NatureServe national landcover, USGS early season invasives (Hanson et al.), and tamarisk probability (Jarnevich et al.)
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Changes in tidal marsh area and habitat type in response to sea-level rise were modeled using the Sea Level Affecting Marshes Model (SLAMM 6) that accounts for the dominant processes involved in wetland conversion and shoreline modifications during long-term sea level rise (Park et al. 1989; Successive versions of the model have been used to estimate the impacts of sea level rise on the coasts of the U.S. The model was produced by Warren Pinnacle Consulting, Inc. for the U.S. Fish and Wildlife Service. The SLAMM version 6 technical document can be accessed at http://warrenpinacle.com/prof/SLAMM. SLAMM outputs were converted from raster to vector features. Land cover (wetland) types were generalized to MesoHabitat...
In the next 100 years, accelerated sea-level rise (SLR) and urbanization will greatly modify coastal landscapes across the globe. More than one-half of coastal wetlands in the contiguous United States are located along the Gulf of Mexico coast. In addition to supporting fish and wildlife habitat, these highly productive wetlands support many ecosystem goods and services including storm protection, recreation, clean water, and carbon sequestration. Historically, tidal saline wetlands (TSWs) have adapted to sea-level fluctuations through lateral and vertical movement on the landscape. As sea levels rise in the future, some TSWs will adapt and migrate landward in undeveloped low-lying areas where migration corridors...
In the next 100 years, accelerated sea-level rise (SLR) and urbanization will greatly modify coastal landscapes across the globe. More than one-half of coastal wetlands in the contiguous United States are located along the Gulf of Mexico coast. In addition to supporting fish and wildlife habitat, these highly productive wetlands support many ecosystem goods and services including storm protection, recreation, clean water, and carbon sequestration. Historically, tidal saline wetlands (TSWs) have adapted to sea-level fluctuations through lateral and vertical movement on the landscape. As sea levels rise in the future, some TSWs will adapt and migrate landward in undeveloped low-lying areas where migration corridors...
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This data set identifies Management Zones to be used in work for the USFWS 2015 Status Review for the greater sage-grouse. Management Zone boundaries in this data set were slightly adjusted from the 2006 WAFWA Management Zone data set. Outer boundaries were adjusted to include all PACs and Populations from the 'GRSG_2015_USFWS_StatusReview_Populations' data set. Management Zone boundaries dividing populations were adjusted to match Population boundaries from the 'GRSG_2015_USFWS_StatusReview_Populations' data set. See the Supplemental Information for more details.
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Green infrastructure networks designed by The Conservation Fund for areas within the Mississippi River Basin. These green infrastructure networks were developed using the core-hub-corridor approach as follows. The building blocks of the network are “core areas” that contain well-functioning natural ecosystems that provide high-quality habitat for native plants and animals. By contrast, “hubs” are aggregations of core areas as well as nearby lands that contribute significantly to ecosystem services like clean water, flood control, carbon sequestration, and recreation opportunities. Finally, “corridors” are relatively linear features linking cores and hubs together, providing essential connectivity for animal, plant,...
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Recent interest has increased related to developing alternative sources of renewable energy to reduce dependence on oil. Some of those sources will include power generation infrastructure and support activities located within continental shelf waters, and potentially within deeper waters off the U.S. Pacific coast and beyond state waters (i.e., outside three nautical miles). Currently, the Bureau of Ocean Energy Management (BOEM) is considering renewable energy proposals off the coast of Oregon. The 2011-2012 Pacific Continental Shelf Environmental Assessment (PaCSEA) project is intended to provide new information on species composition, distribution, abundance, seasonal variation, and habitat utilization among...
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Land managers have incorporated threats to biodiversity for nearly two decades, but very few efforts have included threats from future conditions and fewer still have assessed vulnerability to climate change. This project will address two themes: 1) providing foundational information about habitat fragmentation and connectivity and 2) identifying the degree of vulnerability of key habitats to climate change.For development of understanding broadextent, a landscape-level pattern of climate change is an important complement to approaches to estimate rangeshifts for certain key focal species. Ecological system types (i.e. coarsefilters) are widely used in conservation planning because they contain valuable resources...
Categories: Data, Project; Types: ArcGIS REST Map Service, ArcGIS Service Definition, Downloadable, Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: AZ-01, AZ-04, Applications and Tools, CO-02, CO-03, All tags...
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To evaluate the potential effects of climate change on wildlife habitat and ecological integrity in the northeastern United States from 2010 to 2080, a University of Massachusetts Amherst team derived a set of climate projections at a fine spatial resolution for the entire Northeast. The projections are based upon publicly available climate models.This dataset represents the growing season degree days (number of days in which the average temperature is > 10 degrees C) using one of two IPCC greenhouse gas concentration scenarios (RCP8.5). The dataset is intended to represent typical growing season degree days for the year 2020 rather than the actual growing season degree days. MAP UNITS ARE THE SUM OF DEGREES THAT...
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The Delivery Priority Tool for the AR MAV CDN is an model overlay that stacks (or combines) Ducks Unlimited's Wetland Restoration Suitability Model for the MAV batture, the Forest Breeding-bird Reforestation Decision Support Model for the MAV batture created by the LMV Joint Venture, and Ducks Unlimited's Easement Protection Priority Model for the MAV batture. The Tool then takes the upper tier of these overlapping priorities within and establishes those as the CDN's conservation targets.


map background search result map search result map Vulnerability and Connectivity of Natural Landscapes and Riparian Habitat in the SRLCC National Wetland Inventory Mapping for the Colorado Portion of the SRLCC Colorado Plateau REA Change Agents - Climate Change Colorado Plateau REA Change Agents - Climate Change - Long-Term Potential For Change Colorado Plateau REA Conservation Elements - Aquatic Species: Colorado River Cutthroat Trout Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Mixed Salt Desert Scrub Colorado Plateau REA Terrestrial Intactness and Potential For Change (HUC5) Colorado Plateau REA MQ A1: Where are soils susceptable to wind and water erosion? Colorado Plateau REA MQ F1: Where are areas dominated by major vegetation invasives? Growing Season Degree Days for Northeast, Projected for 2020, RCP 8.5, Ensemble GCM Results Pacific Continental Shelf Environmental Assessment (PaCSEA) GIS Resource Database Sandwich Tern- Potential Habitat Under Sea Level Affecting Marshes Model (SLAMM) Conditions Gridded SSURGO - Poorly Drained Soils Green Infrastructure Networks Arkansas Mississippi Alluvial Valley Conservation Delivery Network - Batture - Decision Priortization Tool 2012 Greater Sage-Grouse 2015 USFWS Status Review Management Zones Segment A - Flood inundation map geospatial datasets for Lake Ontario, New York Segment A - Flood inundation map geospatial datasets for Lake Ontario, New York Sandwich Tern- Potential Habitat Under Sea Level Affecting Marshes Model (SLAMM) Conditions Arkansas Mississippi Alluvial Valley Conservation Delivery Network - Batture - Decision Priortization Tool 2012 Colorado Plateau REA Change Agents - Climate Change - Long-Term Potential For Change Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Mixed Salt Desert Scrub Colorado Plateau REA MQ A1: Where are soils susceptable to wind and water erosion? Colorado Plateau REA MQ F1: Where are areas dominated by major vegetation invasives? National Wetland Inventory Mapping for the Colorado Portion of the SRLCC Pacific Continental Shelf Environmental Assessment (PaCSEA) GIS Resource Database Colorado Plateau REA Terrestrial Intactness and Potential For Change (HUC5) Colorado Plateau REA Change Agents - Climate Change Colorado Plateau REA Conservation Elements - Aquatic Species: Colorado River Cutthroat Trout Vulnerability and Connectivity of Natural Landscapes and Riparian Habitat in the SRLCC Growing Season Degree Days for Northeast, Projected for 2020, RCP 8.5, Ensemble GCM Results Greater Sage-Grouse 2015 USFWS Status Review Management Zones Gridded SSURGO - Poorly Drained Soils Green Infrastructure Networks