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Filters: Tags: {"scheme":"ISO 19115 Topic Category"} (X) > Categories: Data (X) > Extensions: Project (X) > partyWithName: Arctic Landscape Conservation Cooperative (X)

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To elucidate these potential “bottom up” effects of climate changes to Arctic ungulates and evaluate the trophic mismatch hypothesis, the Arctic Landscape Conservation Cooperative (ALCC), the Bureau of Land Management (BLM), the U.S. Geological Survey (USGS), Teck, Inc., and the National Park Service provided funding in 2012-14 to incorporate the calving and summer range of the Western Arctic caribou herd (WAH) into an ongoing inter-agency research and monitoring effort to examine the influences of climate change on the nutrient dynamics of caribou forages. This work is leveraging existing projects on the North Slope of Alaska that are primarily funded through the USGS Changing Arctic Ecosystems Initiative. Field...
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Our overarching questions are: (1) How much of the river water and water-borne constituents (i.e. sediment, nutrients, organic matter) from the Jago, Okpilak and Hulahula rivers are coming from glacier melt? (2) How do inputs from these rivers affect the downstream ecosystems? (3) How will loss of glaciers affect these ecosystems? The study will help elucidate how inputs from glacier-dominated arctic rivers differ from unglaciated rivers, through a combination of ground work, boat work, and remote sensing. In Phase One of this study, we intend to explore the relationship between glaciers and coastal ecosystems. Our goal in this phase-one study is not to answer these questions conclusively but rather improve our...
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More information is needed about species composition, abundance, or distribution of the microfauna and meiofauna living within the interstitial spaces of the littoral zones along the Beaufort Sea coast. Shorebirds depend on meiofauna for food for pre-migratory fattening and these organisms make important contributions to bioremediation of oil spills.The information obtained from this jointly-funded research can contribute to development of mitigation measures and strategies to reduce potential impacts from post-lease exploration and development. This information need extends to the lower trophic levels forming the base of these complex food webs and the biochemistry that influences these relationships. Their contributions...
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The USGS and Arctic National Wildlife Refuge Staff operate and maintain a streamgage at Hulahula River near Kaktovik, Alaska. Data from this station is necessary to complement glacier mass-balance studies and provide information necessary to project stream flow regimes under various scenarios of climate change. This project includes operation, acquiring real-time data, analysis of the data, and internet access. The gauge continues to operate as of 2017.
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LCC funding for this project helped maintain a network of hydrology monitoring sites in a representative watershed of the Arctic Coastal Plain. The work was conducted within the context of climate change and impending oil and gas activities in the region, the latter of which is the impetus for focusing on the Fish Creek watershed. The project included two monitoring components:1) Beaded Stream & Lake Hydrology Monitoring (dominant habitat type within the watershed): in 6 stream/lake complex watersheds (Redworm, Hannahbear, Blackfish, Crea, Oil, and Bills creeks), continuous water level and temperature (in lakes, streams, and confluences), discrete discharge measurements, and continuous water quality (specific conductivity,...
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Using a bioclimatic envelope approach, University of Alberta investigators project how the distribution and abundance of boreal forest birds across North America will respond to different scenarios of future climate-change. Investigation emphasis is on mapping and quantifying potential range expansions of boreal bird species into Arctic and subarctic regions across Alaska and Canada. The final products demonstrate a broad continental-scale overview of potential shifts in avian distribution.
This project uses previously collected ShoreZone imagery to map nearly 1,600 km of coastline between Wales and Kotzebue. With additional mapping supported by the Arctic LCC and National Park Service, this effort will complete the Kotzebue Sound shoreline, which will be included in the state-wide ShoreZone dataset. The complete ShoreZone dataset will be used to conduct a coastal hazards analysis and create maps that identify areas undergoing rapid coastal erosion and areas that are sensitive to inundation by storm surge and sea level rise.​
This project is focused on establishing a statewide framework to improve the hydrography mapping and stewardship in Alaska. This will be acheived through the creation of a statewide system to make digital mapping data updates accessible and affordable, and through the creation of a statewide hydrography mapping coordinator position to synchronize updates and guide hydrography mapping development. This framework will allow agencies and organizations to greatly improve their hydrography mapping data, as well as consume and uplift project level hydrography data that would not otherwise be incorporated.
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Arctic wetlands, where millions of local and migratory birds nest, are composed of a mosaic of ice wedge polygons, non-patterned tundra, and large vegetated drained thaw lake basins. Regional climate projections suggest that evapotranspiration, rainfall, and snowfall will increase, making it difficult to predict how surface water distribution might change and how habitats for the invertebrate resources used by waterbirds will be impacted. This study will focus on evaluating how climate change will affect the invertebrate community, and whether the change in climate (through changes in hydrology and surface energy balance) could induce a trophic mismatch that might alter the growth and survival of shorebird young....
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This project provides a better understanding how linkages among surface-water availability, connectivity, and temperature mediate habitat and trophic dynamics of the Fish Creek Watershed (FCW). These interrelated processes form a shifting mosaic of freshwater habitats across the landscape that can be classified, mapped, understood, and modeled in response to past and future climate and land-use change in a spatial and temporal context. Developing scenarios of freshwater habitat change in this context provides managers and scientists with a flexible template to evaluate a range of potential responses to climate and land-use change. Applying this approach in the FCW is made feasible because of the availability of...
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This project facilitates research within the North Slope science community through improved data sharing and collaboration. This is achieved through the development and implementation of secure data services (SDS) protocols within the North Slope Science Catalog. Implementation included: 1)Determine SDS protocols that will encourage data provider participation. These might include use request, login authorization, prescribed distribution intervals, use agreement and distribution tracking. Initial prototype would consider Migratory Bird Management requirements; 2)Develop Catalog web based SDS implementation that would promote protocols as identified above; This would require cooperative work between data providers...
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The Integrated Ecosystem Model for Alaska project (IEM) uses down-scaled climate models as the drivers of ecosystem change to produce forecasts of future fire, vegetation, permafrost and hydrology regimes at a resolution of 1km. This effort is the first to model ecosystem change on a statewide scale, using climate change input as a major driving variable. The objectives of the IEM project are as follows; to better understand and predict effects of climate change and other stressors on landscape level physical and ecosystem processes, and to provide support for resource conservation planning.The IEM will provide resource managers with a decision support tool to visualize future landscapes in Alaska. Model outputs...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Academics & scientific researchers, DYNAMIC VEGETATION/ECOSYSTEM MODELS, DYNAMIC VEGETATION/ECOSYSTEM MODELS, Datasets/Database, Federal resource managers, All tags...
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Hydrologic data for the Alaska Arctic are sparse, and fewer still are long-term (> 10 year) datasets. This lack of baseline information hinders our ability to assess long-term alterations in streamflow due to changing climate. The Arctic LCC provided stop-gap funding to continue this long time series hydrological data sets in the Kuparuk and Putuligayuk watersheds. See the Arctic LCC funded TEON project for ongoing hydrologic and meteorologic monitoring in these watersheds.
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Historically, available polar bear den habitat models have been based primarily on the presence of topographic features capable of capturing drifting snow. In any given season, however, the availability and precise location of snowdrifts of sufficient size to accommodate a bear den depends on the antecedent snowfall and wind conditions, and these vary from one year to the next. Thus, suitable topography is a necessary pre-condition, but is not sufficient to accurately predict potential den sites in a given year. To satisfy the requirements of agency and industry managers what is needed is a user-friendly decision-support tool that takes into account the current fall and early-winter meteorological conditions, and...
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We assessed change in the seasonal timing of insect emergence from tundra ponds near Barrow, Alaska over a four-decade timespan, and explored factors that regulate this significant ecological phenomenon. The early-summer pulse of adult insects emerging from myriad tundra ponds on the Arctic Coastal Plain is an annual event historically coincident with resource demand by tundra-nesting avian consumers. Asymmetrical changes in the seasonal timing of prey availability and consumer needs may impact arctic-breeding shorebirds, eiders, and passerines. We have found evidence of change in the thermal behavior of these arctic wetlands, along with a shift in the phenology of emerging pond insects. Relative to the 1970s, tundra...
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The most comprehensive historical aerial imagery of Alaska available to the public was collected as partof the Alaska High-Altitude Aerial Photography Program (AHAP) during 1978-1986. Recent studiesexamining coastline erosion have clearly demonstrated that the AHAP photographs are a valuablebaseline for detecting and quantifying change that occurred in Alaska in recent decades. Unfortunately,these data have been greatly underutilized due to challenges associated with orthorectifying the rawimagery and making it ready for users of Geographic Information Systems (GIS). By partnering with theAlaska Satellite Facility (ASF) at the University of Alaska Fairbanks the ALCC has made high-qualityAHAP orthomosaics of the...
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Information on geomorphological andbiological features for 1,095 km of shoreline mapped from the 2013 coastalimaging survey of St. Lawrence Island. The habitat inventory is comprised of 1,994along-shore segments (units), averaging 550 m in length (note that the AK Coast1:63,360 digital shoreline shows this mapping area encompassing 908 km, butmapping data based on better digital shorelines represent the same area with 1,095km stretching along the coast).
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The distribution and abundance of fishes across the Alaska Arctic is not well understood. Better information on fish distribution is needed for habitat assessment and modeling activities and is also important for planning industrial activities. The State of Alaska maintains a fish distribution database for anadromous fish species, however there is currently no analog for resident fish species. The concept behind AquaBase was to fill the information gap for resident fish by design a database that contains information about all fish species. AquaBase does not duplicate information that is already available in other spatial database, but rather ‘rescues’ data from reports that are not readily available.
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Natural resource managers and native communities have expressed a need for effectively synthesizing traditional knowledge and western science data. Often wildlife management plans are based on remotely sensed data and data collected by wildlife biologists. These data may not reflect the variables that are important to the local users, including the scale of information, names describing places or habitats, or how seasonality affects the wildlife available for harvest. The Inuvialuit of the Yukon North Slope have formed a Wildlife Advisory Council, a co-management body, comprised of federal, territorial, and Inuvialuit representatives, and they are working closely with researchers from the Round River Organization...
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Work completed by ANTHC has identified climate-related active and potential human health threats in three thematic areas: 1) Permafrost changes; 2) Habitat changes; 3) Impacts on wildlife. Rural villages in Arctic Alaska have requested, and received in-depth environmental health assessments, and adaptation strategies are in development. In response to these findings, ANTHC has developed the RAMP, and is collaborating with UA to develop relevant monitoring and surveillance tools for the thematic areas identified. This includes a training curriculum for village residents who will be observing, monitoring the RAMP technology, and collecting specimens. In addition, the UA will be funded to develop laboratory technology...


map background search result map search result map Fish Creek Watershed Hydrology Monitoring Integrated Ecosystem Model (AIEM) for Alaska and Northwest Canada Operational Polar Bear Den Mapping Hydrologic Monitoring of Glacier-Influenced Watersheds (Hulahula Gage) Expanding the North Slope Fish Distribution and Water Quality Geodatabase FishCAFE: Response of an Arctic Freshwater Ecosystem to Climate and Land-use Change Yukon Slope Wildlife Management Plan Bringing Alaska's Freshwater Hydrography into the 21st Century St. Lawrence Island ShoreZone Mapping Interdisciplinary Study of How Climate Change May Affect Wetland Habitats, Invertebrates and Shorebirds Changing Seasonality of Invertebrate Food Resources across the Arctic Coastal Plain Historical Orthomosaic, Digital Surface Model, and Shoreline Position for the Northern Alaska Coastline Evaluating the 'Bottom Up' Effects of Changing Habitats: Climate Changes, Vegetative Phenology, and the Nutrient Dynamics of Ungulate Forages Secure Data Services - Improved Data Sharing Through Accountability Integrating studies of glacier dynamics and estuarine chemistry in the context of landscape change in the Arctic Refuge Modeling avifaunal responses to climate change in North America's boreal-Arctic transition zone Shorebirds and Invertebrate Distribution on Delta Mudflats along the Beaufort Sea Streamflow Monitoring on Upper Kuparuk and Putuligayuk Rivers (2012) RAMP: Develop the Rural Alaska Monitoring Program Hydrologic Monitoring of Glacier-Influenced Watersheds (Hulahula Gage) Streamflow Monitoring on Upper Kuparuk and Putuligayuk Rivers (2012) Operational Polar Bear Den Mapping Integrating studies of glacier dynamics and estuarine chemistry in the context of landscape change in the Arctic Refuge Changing Seasonality of Invertebrate Food Resources across the Arctic Coastal Plain FishCAFE: Response of an Arctic Freshwater Ecosystem to Climate and Land-use Change Fish Creek Watershed Hydrology Monitoring Shorebirds and Invertebrate Distribution on Delta Mudflats along the Beaufort Sea Expanding the North Slope Fish Distribution and Water Quality Geodatabase Evaluating the 'Bottom Up' Effects of Changing Habitats: Climate Changes, Vegetative Phenology, and the Nutrient Dynamics of Ungulate Forages Interdisciplinary Study of How Climate Change May Affect Wetland Habitats, Invertebrates and Shorebirds Historical Orthomosaic, Digital Surface Model, and Shoreline Position for the Northern Alaska Coastline Yukon Slope Wildlife Management Plan Secure Data Services - Improved Data Sharing Through Accountability RAMP: Develop the Rural Alaska Monitoring Program Integrated Ecosystem Model (AIEM) for Alaska and Northwest Canada Modeling avifaunal responses to climate change in North America's boreal-Arctic transition zone