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Alaska Science Center

The mission of the Alaska Science Center is to provide objective and timely data, information, and research findings about the earth and its flora and fauna to Federal, State, and local resource managers and the public to support sound decisions regarding natural resources, natural hazards, and ecosystems in Alaska and circumpolar regions. We have offices in Anchorage, Juneau, and Fairbanks. 

News

Studying Tsunami Sands to Better Understand the 1700 Cascadia Earthquake

Studying Tsunami Sands to Better Understand the 1700 Cascadia Earthquake

New Publication Synthesizes Climate Effects on Bears and their Interactions with Humans

New Publication Synthesizes Climate Effects on Bears and their Interactions with Humans

Celebrating Black History: Meet Ric Wilson, A Pioneer of Alaskan Geo-Mapping

Celebrating Black History: Meet Ric Wilson, A Pioneer of Alaskan Geo-Mapping

Publications

Mechanisms by which marine heatwaves impact seabirds

Marine heatwaves (MHWs) are characterized by periods of extreme warming of local to basin-scale marine habitat. Effects of MHWs on some seabirds (e.g. mass die-offs) are well documented, but mechanisms by which seabirds respond to MHWs remain poorly understood. Following from a symposium at the 3rd World Seabird Conference, this Theme Section presents recent research to address this knowledge gap.
Authors
John F. Piatt, Mayumi L. Arimitsu, Sarah Ann Thompson, Rob Suryan, Rory Wilson, Kyle Elliott, W.J. Sydeman

Stratigraphy, paleoflora, and tectonic setting of the Paleogene Sheep Creek volcanic field, central Alaska

In this paper, we provide new information on the stratigraphy and paleoflora of the Sheep Creek volcanic field in the Alaska Range that bolsters our understanding of a key interval in the tectonic, paleoclimate, and paleoenvironmental history of the northern Cordillera. Although the distribution and basic stratigraphy of these rocks have been previously reported, here we document the stratigraphic
Authors
Timothy White, David Sunderlin, Dwight Bradley

Assessment of undiscovered oil and gas resources of the North Chukchi Basin, outer continental shelf of the Chukchi and East Siberian Seas, Arctic Ocean, 2023

Using a geology-based assessment methodology, the U.S. Geological Survey estimated mean volumes of 1.8 billion barrels of oil and 119.9 trillion cubic feet of gas technically recoverable from undiscovered, conventional accumulations in Cretaceous and Cenozoic strata of the North Chukchi Basin.
Authors
David W. Houseknecht, Craig P. Markey, Tracey J. Mercier, Christopher J. Schenk, Christopher D. Connors, Jared T. Gooley, Palma J. Botterell, Rebecca A. Smith, William A. Rouse, Christopher P. Garrity

Science

Evaluating Cultural Resource Vulnerability To Fires And Post-Fire Impacts

Cultural resources are tangible and intangible elements connected to the physical presence, practices, cultural identity, and/or spirituality of past and present societies.
link

Evaluating Cultural Resource Vulnerability To Fires And Post-Fire Impacts

Cultural resources are tangible and intangible elements connected to the physical presence, practices, cultural identity, and/or spirituality of past and present societies.
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Advancing Fire Behavior Modeling For Post-Fire Hazards Assessments

Fire behavior is a complex and highly variable process in both space and time. The interdisciplinary PHIRE team includes USGS scientists from across the Mission Areas, research collaborators from universities and federal agencies, and federal, state, and tribal practitioners and stakeholders.
link

Advancing Fire Behavior Modeling For Post-Fire Hazards Assessments

Fire behavior is a complex and highly variable process in both space and time. The interdisciplinary PHIRE team includes USGS scientists from across the Mission Areas, research collaborators from universities and federal agencies, and federal, state, and tribal practitioners and stakeholders.
Learn More

Post-Fire Hazards Impacts to Resources and Ecosystems (PHIRE): Support for Response, Recovery, and Mitigation

The Post-Fire Hazards Impacts to Resources and Ecosystems (PHIRE) project provides science to characterize climate-amplified, uncharacteristic patterns of wildfire disturbance and post-fire ecosystem recovery and enhance prediction of environmental impacts and post-fire hazards.
link

Post-Fire Hazards Impacts to Resources and Ecosystems (PHIRE): Support for Response, Recovery, and Mitigation

The Post-Fire Hazards Impacts to Resources and Ecosystems (PHIRE) project provides science to characterize climate-amplified, uncharacteristic patterns of wildfire disturbance and post-fire ecosystem recovery and enhance prediction of environmental impacts and post-fire hazards.
Learn More