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Controls on rapid supraglacial lake drainage in West Greenland: an Exploratory Data Analysis approach

机译:西格陵兰西格雷切湖排水的控制:探索性数据分析方法

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The controls on rapid surface lake drainage on the Greenland ice sheet (GrIS) remain uncertain, making it challenging to incorporate lake drainage intomodels of GrIS hydrology, and so to determine the ice-dynamic impact of meltwater reaching the ice-sheet bed. Here, we first use a lake area and volume tracking algorithm to identify rapidly draining lakes within West Greenland during summer 2014. Second, we derive hydrological, morphological, glaciological and surface-mass-balance data for various factors that may influence rapid lake drainage. Third, these factors are used within Exploratory Data Analysis to examine existing hypotheses for rapid lake drainage. This involves testing for statistical differences between the rapidly and non-rapidly draining lake types, as well as examining associations between lake size and the potential controlling factors. This study shows that the two lake types are statistically indistinguishable for almost all factors investigated, except lake area. Thus, we are unable to recommend an empirically supported, deterministic alternative to the fracture area threshold parameter for modelling rapid lake drainage within existing surface-hydrology models of the GrIS. However, if improved remotely sensed datasets (e.g. ice-velocitymaps, climate model outputs) were included in future research, it may be possible to detect the causes of rapid drainage.
机译:格陵兰冰盖(GRIS)快速地表湖排水的控制仍然不确定,使Glis水文湖排水稀释率达到挑战,以确定熔融水到达冰床床的冰动力影响。在这里,我们首先使用湖区和批量跟踪算法来识别2014年夏季西格陵兰西陵的快速排水湖泊。第二,我们为各种可能影响快速湖排水的各种因素导出水文,形态,冰川癖和表面质量平衡数据。第三,这些因素用于探索性数据分析中,检查快速湖排水的现有假设。这涉及在快速和不快速排水的湖泊类型之间测试统计差异,以及检查湖尺寸和潜在控制因子之间的关联。本研究表明,除了湖区外,两种湖泊类型几乎所有因素都是统计学上无法区分的。因此,我们无法推荐用于在GRIS的现有表面水文模型中建模快速湖排水的裂缝区域阈值参数的经验支持的确定性替代品。然而,如果在未来的研究中包括改进的远程感测数据集(例如冰速度,气候模型输出),则可能检测到快速排水的原因。

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