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首页> 外文期刊>Geophysical Research Letters >Increased Subglacial Sediment Discharge in a Warming Climate: Consideration of Ice Dynamics, Glacial Erosion, and Fluvial Sediment Transport
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Increased Subglacial Sediment Discharge in a Warming Climate: Consideration of Ice Dynamics, Glacial Erosion, and Fluvial Sediment Transport

机译:在温暖的气候下增加底纤维沉积物放电:考虑冰动力学,冰川侵蚀和河流沉积物运输

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摘要

We evaluate changes to subglacial sediment discharge during glacier retreat by considering ice dynamics, bedrock erosion, and sediment transport processes. Coupling these components together within a single framework, we simulate sediment discharge from synthetic alpine glaciers experiencing accelerated glacier melt for 100 years. We find that sediment discharge increases by about 8 times the steady glacier values by the end of the simulation. The enhanced sediment discharge persists through peak water discharge and despite annual bedrock erosion volumes decreasing by approximately 30% from the initial value. The greater sediment discharge results from increased melt at the glaciers' higher region, where transport was limited prior to glacier retreat. These findings suggest that large increases in sediment discharge may occur as glaciers retreat. The magnitude of the sediment discharge increase primarily depends on the quantity of sediment stored subglacially.
机译:通过考虑冰动力学,基岩侵蚀和沉积物运输过程,我们评估冰川撤退期间的沉积物沉积物排放的变化。 在一个框架内将这些组件耦合在一起,我们模拟了从经历加速冰川熔体的合成高山冰川融化100年的沉积物排放。 我们发现,沉积物放电在模拟结束时增加了稳定冰川值的约8倍。 通过峰值排放,增强的沉积物排放持续存在,尽管每年的基岩侵蚀体积从初始值下降约30%。 在冰川更高区域的熔体上增加沉积物的较大沉积物,在冰川撤退之前,运输是有限的。 这些发现表明,随着冰川撤退,沉积物排放的大幅增加可能会发生。 沉积物放电增加的幅度主要取决于沉积沉积物的沉积物量。

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