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Hydrographic and climatic changes influencing the proglacial Druzhby drainage system, Vestfold Hills, Antarctica

机译:水文和气候变化影响南极洲维斯特福尔希尔斯(Vestfold Hills)冰河时期的德鲁日比排水系统

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Freshwater drainage systems, fed by melting of nearby inland ice and perennial snowdrifts, exist in the south-eastern part of arid, ice-free, coastal Vestfold Hills. Most important is the complex Druzhby system. Intriguing questions arise about the conditions controlling its seasonal development and about the consequences of possible changes of those conditions. A water-balance was calculated for 1990–91. The system went through four seasonal phases of which only one displayed a fully developed external drainage. Evidently, the relative duration of those phases can vary considerably from one year to another. The system depends critically on the water supply from ice-dammed Chelnok Lake, which could readily be drained by a minor retreat of S?rsdal Glacier. Exposed to excessive evaporation, the large Crooked Lake would then become internally drained and reach a new equilibrium in ~830 years. A Crooked Lake sediment core can be interpreted as suggesting this occurred during the Holocene. The idea, inferred from striae, of a late Holocene Chelnok Glaciation reaching the northern shores of Crooked Lake is questioned. Instead, it is suggested that the Chelnok striae originate from local basal melting of the ice sheet draining southward into a deglaciated S?rsdal trough. At present, runoff is determined by opposing short and long-term climatic influences.
机译:淡水排水系统由附近的内陆冰层融化和多年生的雪堆来补充,该地区存在于干旱,无冰的沿海维斯特福尔山的东南部。最重要的是复杂的Druzhby系统。有关控制其季节性发展的条件以及这些条件可能发生变化的后果,引起了有趣的问题。计算出1990-91年的水平衡。该系统经历了四个季节阶段,其中只有一个阶段显示出完全成熟的外部排水系统。显然,这些阶段的相对持续时间从一年到另一年可能相差很大。该系统主要取决于冰封的切尔诺克湖(Chelnok Lake)的供水,该湖很容易因S?rsdal冰川的小撤退而排干。由于过度蒸发,弯曲的大湖随后将在内部流失,并在​​约830年内达到新的平衡。弯曲的湖沉积物芯可以解释为表明这是在全新世期间发生的。从条带推断,晚新世Chelnok冰川到达弯曲湖北岸的想法受到质疑。取而代之的是,建议切尔诺克海峡条纹起源于向南排入一个成冰状的Ssrsdal槽的冰原的局部基础融化。目前,径流是由短期和长期的气候影响所决定的。

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