Paull Charles K, Dallimore Scott R, Jin Young Keun, Caress David W, Lundsten Eve, Gwiazda Roberto, Anderson Krystle, Hughes Clarke John, Youngblut Scott, Melling Humfrey
Science Division, Monterey Bay Aquarium Research Institute, Moss Landing, CA 93039.
Geological Survey of Canada, Natural Resources Canada, Sidney, BC V8L 4B2, Canada.
Proc Natl Acad Sci U S A. 2022 Mar 22;119(12):e2119105119. doi: 10.1073/pnas.2119105119. Epub 2022 Mar 14.
SignificanceTemperature increases in Arctic regions have focused attention on permafrost degradation on land, whereas little is known about the dynamics of extensive glacial-age permafrost bodies now submerged under the vast Arctic Continental shelves. Repeated high-resolution bathymetric surveys show that extraordinarily rapid morphologic changes are occurring at the edge of the continental slope of the Canadian Beaufort Sea along what was once the seaward limit of relict Pleistocene permafrost. How widespread similar changes are on the Arctic shelves is unknown, as this is one of the first areas in the Arctic subjected to multiple multibeam bathymetric surveys. Rapid morphologic changes associated with active submarine permafrost thawing may be an important process in sculpturing the seafloor in other submarine permafrost settings.
重要性
北极地区的气温升高已将人们的注意力集中在陆地上的永久冻土退化上,而对于如今淹没在广阔北极大陆架之下的大量冰期永久冻土主体的动态变化却知之甚少。多次高分辨率测深调查表明,沿着曾经是更新世残留永久冻土向海界限的加拿大波弗特海大陆坡边缘,正在发生异常迅速的形态变化。由于这是北极地区首个接受多次多波束测深调查的区域之一,所以尚不清楚北极大陆架上类似变化的广泛程度。与活跃的海底永久冻土融化相关的快速形态变化可能是塑造其他海底永久冻土环境中海底地貌的一个重要过程。