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Cold Regions Research and Engineering Laboratory

Datos de la institución

TipoFACILITY (active)
PaísHanover, US
Trabajos35
Investigadores33
Citas11
Índice h2
Cobertura1972 - 2025
ROR05wk0m864
GRIDgrid.270913.e
WikidataQ5142318
OpenAlexI2800251061
Sitio webhttp://www.erdc.usace.army.mil/Locations/CRREL
También conocida comoCold Regions Research and Engineering Laboratory
  • Permafrost vulnerability to climate change

    Open Access•Jing Tao, Anna Liljedahl et al.•ARTICLE•Environmental Research Letters•2025

  • A local meteoric water line for interior Alaska constrains paleoclimate from 40 000 year old relict permafrost

    Open Access•Thomas A Douglas, Amanda Barker et al.•ARTICLE•Environmental Research Letters•2024

  • Quantification of active layer depth at multiple scales in Interior Alaska permafrost

    Open Access•David Brodylo, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2024

  • Combining a climate-permafrost model with fine resolution remote sensor products to quantify active-layer thickness at local scales

    Open Access•Caiyun Zhang, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2024

  • Relationships between summertime surface albedo and melt pond fraction in the central Arctic Ocean

    Open Access•Radiance Calmer, Gillian De Boer et al.•ARTICLE•Elementa Science of the…•2023

  • Seasonal variation in near-surface seasonally thawed active layer and permafrost soil microbial communities

    Open Access•Christopher C M Baker, Amanda Barker et al.•ARTICLE•Environmental Research Letters•2023

  • Spatiotemporal evolution of melt ponds on Arctic sea ice

    Open Access•Melinda Webster, Melinda A Webster et al.•ARTICLE•Elementa Science of the…•2022

  • Drivers of historical and projected changes in diverse boreal ecosystems

    Open Access•M Torre Jorgenson, Dana R N Brown et al.•ARTICLE•Environmental Research Letters•2022

  • Linking repeat lidar with Landsat products for large scale quantification of fire-induced permafrost thaw settlement in interior Alaska

    Open Access•Caiyun Zhang, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2022

  • Machine learning analyses of remote sensing measurements establish strong relationships between vegetation and snow depth in the boreal forest of Interior Alaska

    Open Access•Thomas A Douglas, Caiyun Zhang•ARTICLE•Environmental Research Letters•2021

  • Thawing permafrost

    Open Access•Jessie M Creamean, Thomas C J Hill et al.•ARTICLE•Environmental Research Letters•2020

  • Shallow soils are warmer under trees and tall shrubs across Arctic and Boreal ecosystems

    Open Access•Heather Kropp, M M Loranty et al.•ARTICLE•Environmental Research Letters•2020

  • Fostering multidisciplinary research on interactions between chemistry, biology, and physics within the coupled cryosphere-atmosphere system

    Open Access•Jennie L Thomas, Jennie Thomas et al.•ARTICLE•Elementa Science of the…•2019

  • Watershed slope as a predictor of fluvial dissolved organic matter and nitrate concentrations across geographical space and catchment size in the Arctic

    Open Access•Craig T Connolly, M S Khosh et al.•ARTICLE•Environmental Research Letters•2018

  • Ice and ocean velocity in the Arctic marginal ice zone

    Open Access•Sylvia T Cole, John M Toole et al.•ARTICLE•Elementa Science of the…•2017

  • Missing pieces to modeling the Arctic-Boreal puzzle

    Open Access•Joshua B Fisher, Daniel J Hayes et al.•ARTICLE•Environmental Research Letters•2017

  • Sources and sinks of carbon in boreal ecosystems of interior Alaska

    Open Access•Thomas A Douglas, Miriam C Jones et al.•ARTICLE•Elementa Science of the…•2014

  • Climate archives from 90 to 250 ka in horizontal and vertical ice cores from the Allan Hills Blue Ice Area, Antarctica

    Open Access•Nicole E Spaulding, John A Higgins et al.•ARTICLE•Quaternary Research•2013

  • Quantifying landscape change in an arctic coastal lowland using repeat airborne LiDAR

    Open Access•Benjamin M Jones, Benjamin Jones et al.•ARTICLE•Environmental Research Letters•2013

  • Revised 14 C dating of ice wedge growth in interior Alaska (USA) to MIS 2 reveals cold paleoclimate and carbon recycling in ancient permafrost terrain

    Open Access•Matthew S Lachniet, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2012

  • Tree-ring dates on two pre-Little Ice Age advances in Glacier Bay National Park and Preserve, Alaska, USA

    Open Access•Gregory C Wiles, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2011

  • Multiple Effects of Changes in Arctic Snow Cover

    Open Access•Terry V Callaghan, Margareta Johansson et al.•ARTICLE•AMBIO•2011•Citada por: 7•Referencias: 76

  • Selecting and Testing Cryptogam Species for Use in Wetland Delineation in Alaska

    Open Access•Robert W Lichvar, Gary A Laursen et al.•ARTICLE•ARCTIC•2009

  • The evidence for shrub expansion in Northern Alaska and the Pan‐Arctic

    Open Access•Ken D Tape, KEN TAPE et al.•ARTICLE•Global Change Biology•2006

  • Advances in engineered remediation for use in the Arctic and Antarctica

    Open Access•Dennis M Filler, C M Reynolds et al.•ARTICLE•Polar Record•2006

Siguiente
  • Multiple Effects of Changes in Arctic Snow Cover

    Open Access•Terry V Callaghan, Margareta Johansson et al.•ARTICLE•AMBIO•2011•Citada por: 7•Referencias: 76

  • Mid- to late-Holocene carbon balance in Arctic Alaska and its implications for future global warming

    Open Access•G M Marion, Walter C Oechel•ARTICLE•The Holocene•1993•Citada por: 4•Referencias: 1

  • Permafrost vulnerability to climate change

    Open Access•Jing Tao, Anna Liljedahl et al.•ARTICLE•Environmental Research Letters•2025

  • A local meteoric water line for interior Alaska constrains paleoclimate from 40 000 year old relict permafrost

    Open Access•Thomas A Douglas, Amanda Barker et al.•ARTICLE•Environmental Research Letters•2024

  • Quantification of active layer depth at multiple scales in Interior Alaska permafrost

    Open Access•David Brodylo, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2024

  • Combining a climate-permafrost model with fine resolution remote sensor products to quantify active-layer thickness at local scales

    Open Access•Caiyun Zhang, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2024

  • Relationships between summertime surface albedo and melt pond fraction in the central Arctic Ocean

    Open Access•Radiance Calmer, Gillian De Boer et al.•ARTICLE•Elementa Science of the…•2023

  • Seasonal variation in near-surface seasonally thawed active layer and permafrost soil microbial communities

    Open Access•Christopher C M Baker, Amanda Barker et al.•ARTICLE•Environmental Research Letters•2023

  • Spatiotemporal evolution of melt ponds on Arctic sea ice

    Open Access•Melinda Webster, Melinda A Webster et al.•ARTICLE•Elementa Science of the…•2022

  • Drivers of historical and projected changes in diverse boreal ecosystems

    Open Access•M Torre Jorgenson, Dana R N Brown et al.•ARTICLE•Environmental Research Letters•2022

  • Linking repeat lidar with Landsat products for large scale quantification of fire-induced permafrost thaw settlement in interior Alaska

    Open Access•Caiyun Zhang, Thomas A Douglas et al.•ARTICLE•Environmental Research Letters•2022

  • Machine learning analyses of remote sensing measurements establish strong relationships between vegetation and snow depth in the boreal forest of Interior Alaska

    Open Access•Thomas A Douglas, Caiyun Zhang•ARTICLE•Environmental Research Letters•2021

  • Thawing permafrost

    Open Access•Jessie M Creamean, Thomas C J Hill et al.•ARTICLE•Environmental Research Letters•2020

  • Shallow soils are warmer under trees and tall shrubs across Arctic and Boreal ecosystems

    Open Access•Heather Kropp, M M Loranty et al.•ARTICLE•Environmental Research Letters•2020

  • Fostering multidisciplinary research on interactions between chemistry, biology, and physics within the coupled cryosphere-atmosphere system

    Open Access•Jennie L Thomas, Jennie Thomas et al.•ARTICLE•Elementa Science of the…•2019

  • Watershed slope as a predictor of fluvial dissolved organic matter and nitrate concentrations across geographical space and catchment size in the Arctic

    Open Access•Craig T Connolly, M S Khosh et al.•ARTICLE•Environmental Research Letters•2018

  • Ice and ocean velocity in the Arctic marginal ice zone

    Open Access•Sylvia T Cole, John M Toole et al.•ARTICLE•Elementa Science of the…•2017

  • Missing pieces to modeling the Arctic-Boreal puzzle

    Open Access•Joshua B Fisher, Daniel J Hayes et al.•ARTICLE•Environmental Research Letters•2017

  • Sources and sinks of carbon in boreal ecosystems of interior Alaska

    Open Access•Thomas A Douglas, Miriam C Jones et al.•ARTICLE•Elementa Science of the…•2014

  • Climate archives from 90 to 250 ka in horizontal and vertical ice cores from the Allan Hills Blue Ice Area, Antarctica

    Open Access•Nicole E Spaulding, John A Higgins et al.•ARTICLE•Quaternary Research•2013

  • Quantifying landscape change in an arctic coastal lowland using repeat airborne LiDAR

    Open Access•Benjamin M Jones, Benjamin Jones et al.•ARTICLE•Environmental Research Letters•2013

  • Revised 14 C dating of ice wedge growth in interior Alaska (USA) to MIS 2 reveals cold paleoclimate and carbon recycling in ancient permafrost terrain

    Open Access•Matthew S Lachniet, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2012

  • Tree-ring dates on two pre-Little Ice Age advances in Glacier Bay National Park and Preserve, Alaska, USA

    Open Access•Gregory C Wiles, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2011

  • Selecting and Testing Cryptogam Species for Use in Wetland Delineation in Alaska

    Open Access•Robert W Lichvar, Gary A Laursen et al.•ARTICLE•ARCTIC•2009

  • The evidence for shrub expansion in Northern Alaska and the Pan‐Arctic

    Open Access•Ken D Tape, KEN TAPE et al.•ARTICLE•Global Change Biology•2006

  • Speculations about the Next Glaciation

    Open Access•W Dansgaard, S J Johnsen et al.•ARTICLE•Quaternary Research•1972

  • The Physical, Chemical and Biological Effects of Crude Oil Spills on Black Spruce Forest, Interior Alaska

    Open Access•Tom Jenkins, T F Jenkins et al.•ARTICLE•ARCTIC•1978

  • Source and Origin of Roxana Silt and Middle Wisconsinan Midcontinent Glacial Activity

    Open Access•W Hilton Johnson, Leon R Follmer•ARTICLE•Quaternary Research•1989

  • Abrupt increase in Greenland snow accumulation at the end of the Younger Dryas event

    Open Access•Richard B Alley, D A Meese et al.•ARTICLE•Nature•1993

  • Mid- to late-Holocene carbon balance in Arctic Alaska and its implications for future global warming

    Open Access•G M Marion, Walter C Oechel•ARTICLE•The Holocene•1993•Citada por: 4•Referencias: 1

  • The Physical, Chemical, and Biological Effects of Crude Oil Spills after 15 Years on a Black Spruce Forest, Interior Alaska

    Open Access•Charles M Collins, Charles H Racine et al.•ARTICLE•ARCTIC•1994

  • Complexity of Holocene Climate as Reconstructed from a Greenland Ice Core

    Open Access•S R O'Brien, Suzanne O’Brien et al.•ARTICLE•Science•1995

  • Plant enhancement of indigenous soil micro-organisms

    Open Access•C M Reynolds, D C Wolf et al.•ARTICLE•Polar Record•1999•Referencias: 7

  • Increasing shrub abundance in the Arctic

    Open Access•Matthew Sturm, Charles Racine et al.•ARTICLE•Nature•2001

  • Evidence and Implications of Recent Climate Change in Northern Alaska and Other Arctic Regions

    Open Access•Larry D Hinzman, Neil D Bettez et al.•ARTICLE•Climatic Change•2005

  • The evidence for shrub expansion in Northern Alaska and the Pan‐Arctic

    Open Access•Ken D Tape, KEN TAPE et al.•ARTICLE•Global Change Biology•2006

  • Advances in engineered remediation for use in the Arctic and Antarctica

    Open Access•Dennis M Filler, C M Reynolds et al.•ARTICLE•Polar Record•2006

  • Selecting and Testing Cryptogam Species for Use in Wetland Delineation in Alaska

    Open Access•Robert W Lichvar, Gary A Laursen et al.•ARTICLE•ARCTIC•2009

  • Tree-ring dates on two pre-Little Ice Age advances in Glacier Bay National Park and Preserve, Alaska, USA

    Open Access•Gregory C Wiles, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2011

  • Multiple Effects of Changes in Arctic Snow Cover

    Open Access•Terry V Callaghan, Margareta Johansson et al.•ARTICLE•AMBIO•2011•Citada por: 7•Referencias: 76

  • Revised 14 C dating of ice wedge growth in interior Alaska (USA) to MIS 2 reveals cold paleoclimate and carbon recycling in ancient permafrost terrain

    Open Access•Matthew S Lachniet, Daniel E Lawson et al.•ARTICLE•Quaternary Research•2012

  • Climate archives from 90 to 250 ka in horizontal and vertical ice cores from the Allan Hills Blue Ice Area, Antarctica

    Open Access•Nicole E Spaulding, John A Higgins et al.•ARTICLE•Quaternary Research•2013

  • Quantifying landscape change in an arctic coastal lowland using repeat airborne LiDAR

    Open Access•Benjamin M Jones, Benjamin Jones et al.•ARTICLE•Environmental Research Letters•2013

  • Sources and sinks of carbon in boreal ecosystems of interior Alaska

    Open Access•Thomas A Douglas, Miriam C Jones et al.•ARTICLE•Elementa Science of the…•2014

  • Ice and ocean velocity in the Arctic marginal ice zone

    Open Access•Sylvia T Cole, John M Toole et al.•ARTICLE•Elementa Science of the…•2017

  • Missing pieces to modeling the Arctic-Boreal puzzle

    Open Access•Joshua B Fisher, Daniel J Hayes et al.•ARTICLE•Environmental Research Letters•2017

  • Watershed slope as a predictor of fluvial dissolved organic matter and nitrate concentrations across geographical space and catchment size in the Arctic

    Open Access•Craig T Connolly, M S Khosh et al.•ARTICLE•Environmental Research Letters•2018

  • Fostering multidisciplinary research on interactions between chemistry, biology, and physics within the coupled cryosphere-atmosphere system

    Open Access•Jennie L Thomas, Jennie Thomas et al.•ARTICLE•Elementa Science of the…•2019

  • Thawing permafrost

    Open Access•Jessie M Creamean, Thomas C J Hill et al.•ARTICLE•Environmental Research Letters•2020

  • Shallow soils are warmer under trees and tall shrubs across Arctic and Boreal ecosystems

    Open Access•Heather Kropp, M M Loranty et al.•ARTICLE•Environmental Research Letters•2020

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