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首页> 外文期刊>Journal of Hydrology >Partitioning the contributions of glacier melt and precipitation to the 1971-2010 runoff increases in a headwater basin of the Tarim River
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Partitioning the contributions of glacier melt and precipitation to the 1971-2010 runoff increases in a headwater basin of the Tarim River

机译:在塔里木河的下水域盆地中分区冰川熔体和降水的贡献增加

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摘要

Glacier retreat and runoff increases in the last few decades characterize conditions in the Kumalak River Basin, which is a headwater basin of the Tarim River with a catchment area of 12,800 km(2). To address the scientific question of whether, and to what extent, the observed runoff increase can be attributed to enhanced glacier melt and/or increased precipitation, a glacier evolution scheme and precipitation-runoff model are developed. Using the glacio-hydrological model, we find that both glacier cover area and glacier mass in the study area have decreased from 1971 to 2010. On average, the contribution to total runoff from rainfall, glacier melt and snowmelt are 60.6%, 28.2% and 11.2%, respectively. Despite covering only 21.3% of the basin area, glacier areas contributed 43.3% (including rainfall, snowmelt and glacier melt) to the total runoff from our model estimates. Furthermore, as primary causes of increased runoff in response to the warmer and wetter climate over the period 1971-2010, contribution from increases in rainfall and glacier melt are 56.7% and 50.6%, respectively. In comparison to rainfall and glacier melt, snowmelt has a minor influence on runoff increase, accounting for -7.3%. The research has important implications for water resources development in this arid region and for some similar river basins in which glacial melt forms an important part of the hydrological cycle.
机译:冰川撤退和径流在过去的几十年中增加了Kumalak River河流域的条件,这是一个塔里木河的下水盆地,集水区为12,800公里(2)。为了解决无论以及在多大程度上,观察到的径流增加都可以归因于增强的冰川熔体和/或增加降水,开发了冰川演化方案和降水径流模型。使用漫游水文模型,我们发现,研究区的冰川覆盖区和冰川群体从1971年到2010年下降。平均而言,从降雨,冰川熔化和雪地射门的贡献为60.6%,28.2%分别为11.2%。尽管仅占盆地地区的21.3%,但冰川地区贡献了43.3%(包括降雨,雪橇和冰川熔体),从我们的型号估计中达到了总径流。此外,由于1971 - 2010年期间,追溯增加径流的主要原因,降雨量和冰川熔体增加的贡献分别为56.7%和50.6%。与降雨和冰川融化相比,雪花对径流的影响很小,占-7.3%。该研究对这一干旱地区的水资源开发和一些类似的河流池具有重要意义,其中冰川熔体形成水文循环的重要部分。

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