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Seasonal evolution of subglacial drainage and acceleration in a Greenland outlet glacier

机译:格陵兰岛出口冰川下冰川下排水的季节演变和加速

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The Greenland ice sheet contains enough water to raise sea levels by 7 m. However, its present mass balance and future contribution to sea level rise is poorly understood. Accelerated mass loss has been observed near the ice sheet margin, partly as a result of faster ice motion. Surface melt waters can reach the base of the ice sheet and enhance basal ice motion. However, the response of ice motion to seasonal variations in meltwater supply is poorly constrained both in space and time. Here we present ice motion data obtained with global positioning system receivers located along a 35 km transect at the western margin of the Greenland ice sheet throughout a summer melt season. Our measurements reveal substantial increases in ice velocity during summer, up to 220% above winter background values. These speed-up events migrate up the glacier over the course of the summer. The relationship between melt and ice motion varies both at each site throughout the melt season and between sites. We suggest that these patterns can be explained by the seasonal evolution of the subglacial drainage system similar to hydraulic forcing mechanisms for ice dynamics that have been observedat smaller glaciers.
机译:格陵兰岛冰盖中的水分足以使海平面上升7 m。但是,人们对其目前的质量平衡以及对海平面上升的未来贡献知之甚少。在冰盖边缘附近观察到加速的质量损失,部分原因是更快的冰运动。地表融化水可以到达冰盖的底部,并增强基础冰的运动。但是,冰运动对融水供应的季节性变化的响应在时间和空间上都受到很大的限制。在这里,我们介绍了在整个夏季融化季节中,使用格陵兰冰盖西缘35公里断面处的全球定位系统接收器获得的冰运动数据。我们的测量结果表明,夏季冰速大幅增加,比冬季背景值高出220%。这些加速事件在整个夏季过程中会向上迁移至冰川。在整个融化季节的每个站点以及站点之间,融雪与冰运动之间的关系都不同。我们认为,这些模式可以通过冰川下排水系统的季节性演变来解释,类似于在较小冰川中观察到的冰动力学的水力强迫机制。

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