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Spatial analyses of thermokarst lakes and basins in Yedoma landscapes of the Lena Delta

机译:Lena三角洲Yedoma景观中的喀斯特湖泊和盆地的空间分析

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Distinctive periglacial landscapes have formed in late-Pleistocene ice-rich permafrost deposits (Ice Complex) of northern Yakutia, Siberia. Thermokarst lakes and thermokarst basins alternate with ice-rich Yedoma uplands. We investigate different thermokarst stages in Ice Complex deposits of the Lena River Delta using remote sensing and geoinformation techniques. The morphometry and spatial distribution of thermokarst lakes on Yedoma uplands, thermokarst lakes in basins, and thermokarst basins are analyzed, and possible dependence upon relief position and cryolithological context is considered. Of these thermokarst stages, developing thermokarst lakes on Yedoma uplands alter ice-rich permafrost the most, but occupy only 2.2% of the study area compared to 20.0% occupied by thermokarst basins. The future potential for developing large areas of thermokarst on Yedoma uplands is limited due to shrinking distances to degradational features and delta channels that foster lake drainage. Further thermokarst development in existing basins is restricted to underlying deposits that have already undergone thaw, compaction, and old carbon mobilization, and to deposits formed after initial lake drainage. Future thermokarst lake expansion is similarly limited in most of Siberia's Yedoma regions covering about 10sup6/sup kmsup2/sup, which has to be considered for water, energy, and carbon balances under warming climate scenarios.
机译:西伯利亚北部雅库特北部晚更新世富含冰的多年冻土沉积物(冰复合体)中形成了独特的冰川景观。地热岩溶湖和地热岩溶盆地与富含冰的耶德玛高地交替。我们使用遥感和地理信息技术调查了利纳河三角洲冰复杂矿床的不同岩溶阶段。分析了Yedoma山地热喀斯特湖,盆地热喀斯特湖和热喀斯特盆地的形貌和空间分布,并考虑了可能依赖于起伏位置和冰冻岩脉环境。在这些热岩溶阶段中,Yedoma高地上发育中的热岩溶湖改变了富含冰的多年冻土,但仅占研究区域的2.2%,而热岩溶盆地则占20.0%。由于与退化特征和促进湖泊排水的三角洲通道的距离不断缩小,在伊德玛高地上发展大面积喀斯特地貌的潜力有限。现有盆地中进一步的热岩溶发展仅限于已经经历了融化,压实和旧碳移动的下伏沉积物,以及最初的湖泊排水后形成的沉积物。类似地,未来的热喀斯特湖扩张在西伯利亚的大多数Yedoma地区也受到限制,覆盖约10 6 km 2 ,在气候变暖的情况下必须考虑水,能量和碳的平衡场景。

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