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Original Articles

Variability of Active-layer Thickness at Multiple Spatial Scales, North-central Alaska, U.S.A.

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Pages 179-186 | Published online: 02 May 2018

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Read on this site (6)

Frederick E. Nelson, Nikolay I. Shiklomanov & Kelsey E. Nyland. (2021) Cool, CALM, collected: the Circumpolar Active Layer Monitoring program and network. Polar Geography 44:3, pages 155-166.
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Kelsey E. Nyland, Nikolay I. Shiklomanov, Dmitry A. Streletskiy, Frederick E. Nelson, Anna E. Klene & Alexander L. Kholodov. (2021) Long-term Circumpolar Active Layer Monitoring (CALM) program observations in Northern Alaskan tundra. Polar Geography 44:3, pages 167-185.
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Andrey Abramov, Sergey Davydov, Andrey Ivashchenko, Dmitry Karelin, Alexandr Kholodov, Gleb Kraev, Alexey Lupachev, Alexey Maslakov, Vladimir Ostroumov, Elizaveta Rivkina, Denis Shmelev, Victor Sorokovikov, Oleg Tregubov, Alexandra Veremeeva, Dmitry Zamolodchikov & Sergey Zimov. (2021) Two decades of active layer thickness monitoring in northeastern Asia. Polar Geography 44:3, pages 186-202.
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Anna E. Klene & Frederick E. Nelson. (2019) Urban Geocryology: Mapping Urban–Rural Contrasts in Active-Layer Thickness, Barrow Peninsula, Northern Alaska. Annals of the American Association of Geographers 109:5, pages 1394-1414.
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DmitryA. Streletskiy, NikolayI. Shiklomanov & FrederickE. Nelson. (2012) Spatial variability of permafrost active-layer thickness under contemporary and projected climate in Northern Alaska. Polar Geography 35:2, pages 95-116.
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Peter A. Conovitz, Lee H. MacDonald & Diane M. McKnight. (2006) Spatial and Temporal Active Layer Dynamics along Three Glacial Meltwater Streams in the McMurdo Dry Valleys, Antarctica. Arctic, Antarctic, and Alpine Research 38:1, pages 42-53.
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Articles from other publishers (16)

Huong Phan Thu Ngo, Svein-Erik SveenEirik Gjerløw. (2022) Artificial Thawing of Frozen Ground: A Review. Journal of Cold Regions Engineering 36:4.
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Mara Rossi, Michela Dal Cin, Stefano Picotti, Davide Gei, Vladislav S. Isaev, Andrey V. Pogorelov, Eugene I. Gorshkov, Dmitrii O. Sergeev, Pavel I. Kotov, Massimo Giorgi & Mario L. Rainone. (2022) Active Layer and Permafrost Investigations Using Geophysical and Geocryological Methods—A Case Study of the Khanovey Area, Near Vorkuta, in the NE European Russian Arctic. Frontiers in Earth Science 10.
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Clayton W. Queen & Frederick E. Nelson. (2022) Characteristic periglacial topography: Multi‐scale hypsometric analysis of cryoplanated uplands in eastern Beringia. Permafrost and Periglacial Processes 33:3, pages 241-263.
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Takahiro ABE, Go IWAHANA, Toshio SONE & Masao UCHIDA. (2022) Surface displacement induced by seasonal ground thaw, measured by synthetic aperture radar in the Daisetsu Mountains, Japan合成開口レーダによる大雪山系における季節的凍土融解に伴う地表面変位量分布. Journal of the Japanese Society of Snow and Ice 84:1, pages 13-27.
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Wojciech Dobiński. (2020) Permafrost active layer. Earth-Science Reviews 208, pages 103301.
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Michael T. O'Connor, M. Bayani Cardenas, Bethany T. Neilson, Kindra D. Nicholaides & George W. Kling. (2019) Active Layer Groundwater Flow: The Interrelated Effects of Stratigraphy, Thaw, and Topography. Water Resources Research 55:8, pages 6555-6576.
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Olli Karjalainen, Juha Aalto, Miska Luoto, Sebastian Westermann, Vladimir E. Romanovsky, Frederick E. Nelson, Bernd Etzelmüller & Jan Hjort. (2019) Circumpolar permafrost maps and geohazard indices for near-future infrastructure risk assessments. Scientific Data 6:1.
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Heather Brooks, Guy Doré & Sharon L. Smith. (2018) Permafrost geotechnical index property variation and its effect on thermal conductivity calculations. Cold Regions Science and Technology 148, pages 63-76.
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Paweł Zieliński, Robert J. Sokołowski, Barbara Woronko, Stanisław Fedorowicz, Michał Jankowski & Karol Standzikowski. (2016) Sandy deposition in a small dry valley in the periglacial zone of the Last Glacial Maximum: A case study from the Józefów site, SE Poland. Quaternary International 399, pages 58-71.
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Naïm Perreault, Esther Lévesque, Daniel Fortier & Laurent J. Lamarque. (2016) Thermo-erosion gullies boost the transition from wet to mesic tundra vegetation. Biogeosciences 13:4, pages 1237-1253.
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Yong-Hoon Byun, Hyung-Koo Yoon, Young Seok Kim, Seung Seo Hong & Jong-Sub Lee. (2014) Active layer characterization by instrumented dynamic cone penetrometer in Ny-Alesund, Svalbard. Cold Regions Science and Technology 104-105, pages 45-53.
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Nikolay I. Shiklomanov, Dmitry A. Streletskiy, Frederick E. Nelson, Robert D. Hollister, Vladimir E. Romanovsky, Craig E. Tweedie, James G. Bockheim & Jerry Brown. (2010) Decadal variations of active-layer thickness in moisture-controlled landscapes, Barrow, Alaska. Journal of Geophysical Research 115.
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Merten Minke, Norman Donner, Nikolay Karpov, Pim de Klerk & Hans Joosten. (2009) Patterns in vegetation composition, surface height and thaw depth in polygon mires in the Yakutian Arctic (NE Siberia): a microtopographical characterisation of the active layer. Permafrost and Periglacial Processes 20:4, pages 357-368.
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Hanna Ridefelt & Jan Boelhouwers. (2006) Observations on regional variation in solifluction landform morphology and environment in the Abisko region, northern Sweden. Permafrost and Periglacial Processes 17:3, pages 253-266.
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Tingjun Zhang. (2005) Spatial and temporal variability in active layer thickness over the Russian Arctic drainage basin. Journal of Geophysical Research 110:D16.
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Claire E. Gomersall & Kenneth M. Hinkel. (2010) Estimating the Variability of Active-Layer Thaw Depth in Two Physiographic Regions of Northern Alaska. Geographical Analysis 33:2, pages 141-155.
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