首页> 外文期刊>Frontiers in Digital Humanities >Pond Dynamics and Supraglacial-Englacial Connectivity on Debris-Covered Lirung Glacier, Nepal
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Pond Dynamics and Supraglacial-Englacial Connectivity on Debris-Covered Lirung Glacier, Nepal

机译:尼泊尔碎屑覆盖的利隆冰川的池塘动力学和冰上与冰上的连通性

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The hydrological systems of heavily-downwasted debris-covered glaciers differ from clean-ice glaciers due to the hummocky surface and debris mantle of such glaciers, leading to a relatively limited understanding of drainage pathways. Supraglacial ponds represent sinks within the discontinuous supraglacial drainage system, and have been documented to sporadically drain englacially. To assess pond dynamics, pond water level measurements were made on Lirung Glacier during May and October of 2013 and 2014. The four field seasons coincided with aerial, satellite, and terrestrial orthomosaic images and digital elevation models, which provided snapshots of the ponds and their surroundings. We analysed the glacier's closed surface catchments to identify surface drainage pathways and englacial drainage points, and compared this to field observations of surface discahrge. The ponded area was higher in the pre-monsoon than post-monsoon, with individual ponds filling and draining seasonally associated with the surface exposure of englacial conduit segments. We recorded four pond drainage events, all of which occurred gradually (duration of weeks), observed diurnal fluctuations indicative of varying supply and discharge, and we documented instances of interaction between distant ponds. The DEM drainage analysis identified numerous sinks 3m across the glacier surface, few of which exhibited ponds (23%), while the field survey highlighted surface discharge only explicable via englacial routes. Taken together our observations provide evidence for widespread supraglacial-englacial connectivity for meltwater drainage paths. Results suggest that progressive englacial conduit collapse events, themselves likely driven by supraglacial pond drainage, enable the glacier surface to evolve into a configuration following relict englacial conduit systems. Within this system, ponds form in depressions of reduced drainage efficiency and link the supraglacial and englacial drainage networks.
机译:由于冰川垂向的表面和碎屑斗篷,冰川覆盖的冰川的水文系统与清洁冰河的冰川有所不同,导致人们对排水路径的理解相对有限。冰川上的池塘代表不连续的冰川上排水系统中的水池,并且已经被记录为冰川上的零星排水。为了评估池塘动态,在2013年5月,10月和2014年5月期间在Lirung冰川上进行了池塘水位测量。这四个田间季节与空中,卫星和地面正马赛克图像和数字高程模型相吻合,从而提供了池塘及其快照。环境。我们分析了冰川的封闭表层集水区,以识别表层排水路径和冰川排水点,并将其与野外观测相比较。季风前的池塘面积大于季风后的池塘面积,单个池塘的季节性充水和排水与冰川管道段的表面暴露有关。我们记录了四个池塘排水事件,所有这些事件都是逐渐发生的(持续数周),观察到昼夜波动表明供水和排水量有所变化,并且我们记录了远处池塘之间相互作用的实例。 DEM排水分析确定了整个冰川表面上大于3m的汇,其中很少有池塘(占23%),而现场调查则表明,只有通过冰川路径才能解释地表排水。综上所述,我们的观察结果为融水排水路径上的冰上-冰上连通性提供了证据。结果表明,渐进的冰河导管坍塌事件本身可能是由冰河上池塘排水驱动的,使冰川表面在遗迹化的冰河导管系统之后演变成构造。在该系统中,池塘形成于排水效率降低的洼地中,并连接了冰川上和冰川下的排水网络。

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