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Heat and salt flow in subsea permafrost modeled with CryoGRID2

  • Thawing of subsea permafrost can impact offshore infrastructure, affect coastal erosion, and release permafrost organic matter. Thawing is usually modeled as the result of heat transfer, although salt diffusion may play an important role in marine settings. To better quantify nearshore subsea permafrost thawing, we applied the CryoGRID2 heat diffusion model and coupled it to a salt diffusion model. We simulated coastline retreat and subsea permafrost evolution as it develops through successive stages of a thawing sequence at the Bykovsky Peninsula, Siberia. Sensitivity analyses for seawater salinity were performed to compare the results for the Bykovsky Peninsula with those of typical Arctic seawater. For the Bykovsky Peninsula, the modeled ice-bearing permafrost table (IBPT) for ice-rich sand and an erosion rate of 0.25m/year was 16.7 m below the seabed 350m offshore. The model outputs were compared to the IBPT depth estimated from coastline retreat and electrical resistivity surveys perpendicular to and crossing the shoreline of theThawing of subsea permafrost can impact offshore infrastructure, affect coastal erosion, and release permafrost organic matter. Thawing is usually modeled as the result of heat transfer, although salt diffusion may play an important role in marine settings. To better quantify nearshore subsea permafrost thawing, we applied the CryoGRID2 heat diffusion model and coupled it to a salt diffusion model. We simulated coastline retreat and subsea permafrost evolution as it develops through successive stages of a thawing sequence at the Bykovsky Peninsula, Siberia. Sensitivity analyses for seawater salinity were performed to compare the results for the Bykovsky Peninsula with those of typical Arctic seawater. For the Bykovsky Peninsula, the modeled ice-bearing permafrost table (IBPT) for ice-rich sand and an erosion rate of 0.25m/year was 16.7 m below the seabed 350m offshore. The model outputs were compared to the IBPT depth estimated from coastline retreat and electrical resistivity surveys perpendicular to and crossing the shoreline of the Bykovsky Peninsula. The interpreted geoelectric data suggest that the IBPT dipped to 15-20m below the seabed at 350m offshore. Both results suggest that cold saline water forms beneath grounded ice and floating sea ice in shallow water, causing cryotic benthic temperatures. The freezing point depression produced by salt diffusion can delay or prevent ice formation in the sediment and enhance the IBPT degradation rate. Therefore, salt diffusion may facilitate the release of greenhouse gasses to the atmosphere and considerably affect the design of offshore and coastal infrastructure in subsea permafrost areas.show moreshow less

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Author details:Michael AngelopoulosORCiDGND, Sebastian WestermannORCiD, Pier Paul OverduinORCiDGND, Alexey Faguet, Vladimir OlenchenkoORCiD, Guido GrosseORCiDGND, Mikhail N. GrigorievORCiDGND
DOI:https://doi.org/10.1029/2018JF004823
ISSN:2169-9003
ISSN:2169-9011
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/31423408
Title of parent work (English):Journal of geophysical research : Earth surface
Publisher:American Geophysical Union
Place of publishing:Hoboken
Publication type:Article
Language:English
Date of first publication:2019/02/10
Publication year:2019
Release date:2021/03/08
Tag:Bykovsky Peninsula; CryoGRID; Lena Delta; electrical resistivity; salt diffusion; subsea permafrost
Volume:124
Issue:4
Number of pages:18
First page:920
Last Page:937
Funding institution:PETA-CARB project [ERC 338335]; Novosibirsk State University [5-100]; Russian Foundation for Basic Research (RFBR/RFFI) [18-05-70091, 18-45-140057]; Federal Ministry of Education and Research in Germany [030F0764B]; Program of Fundamental Scientific Research (FSR) from the IPGG [0331-2019-0007, 0331-2019-0016]; SatPerm [239918]; PermaNor [255331/E10]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
Publishing method:Open Access / Hybrid Open-Access
License (German):License LogoCC-BY-NC-ND - Namensnennung, nicht kommerziell, keine Bearbeitungen 4.0 International
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