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Advances in modelling subglacial lakes and their interaction with the Antarctic ice sheet

机译:冰河下湖泊建模及其与南极冰盖相互作用的研究进展

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Subglacial lakes have long been considered hydraulically isolated water bodies underneath ice sheets. This view changed radically with the advent of repeat-pass satellite altimetry and the discovery of multiple lake discharges and water infill, associated with water transfer over distances of more than 200 km. The presence of subglacial lakes also influences ice dynamics, leading to glacier acceleration. Furthermore, subglacial melting under the Antarctic ice sheet is more widespread than previously thought, and subglacial melt rates may explain the availability for water storage in subglacial lakes and water transport. Modelling of subglacial water discharge in subglacial lakes essentially follows hydraulics of subglacial channels on a hard bed, where ice sheet surface slope is a major control on triggering subglacial lake discharge. Recent evidence also points to the development of channels in deformable sediment in West Antarctica, with significant water exchanges between till and ice. Most active lakes drain over short time scales and respond rapidly to upstream variations. Several Antarctic subglacial lakes exhibit complex interactions with the ice sheet due to water circulation. Subglacial lakes can therefore-from a modelling point of view-be seen as confined small oceans underneath an imbedded ice shelf.
机译:冰河以下湖泊长期以来被认为是冰盖下水力隔离的水体。随着重复通过卫星测高技术的出现,以及多次湖泊排水和注水的发现,这种观点发生了根本性的变化,这与超过200 km的距离的调水有关。冰川下湖泊的存在也影响着冰的动力学,导致冰川加速。此外,南极冰盖下的冰下融化比以前认为的要普遍得多,并且冰下融化速率可能解释了冰下湖泊中储水的可行性和水的运输。冰河湖下冰河水排放的模型基本上遵循硬床上的冰河下水道的水力学,其中冰盖表面的坡度是触发冰湖湖水排放的主要控制因素。最近的证据还指出,在南极西部可变形沉积物中形成了河道,直到耕till和冰层之间有大量的水交换。大多数活跃的湖泊在短时间内流失,并迅速响应上游变化。由于水循环,几个南极冰河下湖泊与冰盖之间存在复杂的相互作用。因此,从建模的角度来看,冰川下的湖泊可以看作是嵌在冰架下面的狭窄海洋。

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