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Genesis of dewatering structures and its implications for melt-out till identification

机译:脱水结构的成因及其对融化直至鉴定的影响

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Dewatering structures are a common feature used to identify melt-out till, and the lack of such structures in till could preclude deposition by melt-out. To assess the conditions under which melt-out till can be deposited without forming dewatering structures, I use geoteclinical data and a quasi-two-dimensional model of geothermal melt-out. Critical discharge determined from geotechnical data suggests that low-hydraulic-conductivity till can transport up to 1.3 m(3) water a(-1) m(-2) without forming dewatering structures, which is two to three orders of magnitude greater than the volume of meltwater produced at the base of glaciers. The model indicates that debris content of the ice and the ability of the till to drain govern effective pressure during melt-out. If the drainage system is poorly developed or the till comes from debris-poor ice, effective pressure is below zero, the condition under which dewatering structures could form. However, till from relatively debris-rich ice (>40% debris) with a well-developed drainage system (channels every 10 m) can dewater without forming dewatering structures. This suggests that the lack of dewatering structures in till does not necessarily imply deposition by lodgement or deforming bed.
机译:脱水结构是用于识别融化的耕till的常见特征,而耕till中缺乏此类结构可能会阻止融化而沉积。为了评估在不形成脱水结构的情况下可以沉积熔解物的条件,我使用了地球化学数据和地热熔解的准二维模型。根据岩土工程数据确定的临界流量表明,低水电导率直到能够输送高达1.3 m(3)的水a(-1)m(-2)而不形成脱水结构,这比排水结构大2至3个数量级。冰川底部产生的融水量。该模型表明,融化过程中,冰中的碎屑含量和耕till排水能力决定了有效压力。如果排水系统发展不佳或耕层来自碎屑少的冰,则有效压力低于零,这是形成脱水结构的条件。但是,直到具有相对发达的排水系统(每10 m的通道)的相对富含碎片的冰(> 40%的碎片)才能脱水而不会形成脱水结构。这表明,耕层中缺乏脱水结构并不一定意味着通过堆积或变形床而沉积。

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