Glacial Lakes of Mongolia

Michael Walther, Ulrich Kamp, Nyam-Osor Nandintsetseg, A. Dashtseren, Khurelbaatar Temujin
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Abstract

The over 2200 lakes of Mongolia are generally poorly studied, particularly the glacial lakes. This overview study presents a classification of the glacial lakes based on tectonic-geological and geomorphological dynamics. Selected representative lakes are described using results from fieldwork and satellite image analysis, including bathymetry, paleoshorelines, and recent lake-level fluctuations between 1987 and 2020. Generally, lake levels dropped from the early Holocene until recently, with the onset of the climate change-driven glacier recession that has resulted in lake-level rises and area expansion in almost all moraine-dammed, tongue-basin, and ice-contact lakes. In contrast, endorheic lakes have mainly been shrinking for the past forty years because of an increase in air temperature and evaporation rates and the effects of an intensifying water use within the catchment for irrigation, mining, and hydroelectric energy production in the form of dams. The creation of a lake monitoring system based on an in-depth inventory is recommended.
蒙古冰川湖
对蒙古 2200 多个湖泊,尤其是冰川湖的研究普遍较少。本概述研究根据构造地质和地貌动态对冰川湖进行了分类。利用实地考察和卫星图像分析的结果,包括水深测量、古海岸线以及 1987 年至 2020 年间的近期湖泊水位波动,对部分代表性湖泊进行了描述。一般来说,湖泊水位从全新世早期开始下降,直到最近气候变化导致冰川退缩,几乎所有冰碛堰塞湖、舌盆湖和冰川接触湖的湖泊水位都在上升,面积也在扩大。相比之下,内流湖在过去的四十年中主要是由于气温升高、蒸发率增加,以及集水区内灌溉、采矿和以水坝为形式的水力发电等用水量增加的影响而不断缩小。建议在深入清查的基础上建立湖泊监测系统。
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CiteScore
1.70
自引率
0.00%
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