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Responses of streamflow to climate and land surface change in the headwaters of the Yellow River Basin

机译:Responses of streamflow to climate and land surface change in the headwaters of the Yellow River Basin

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摘要

The headwater catchments of the Yellow River Basin are of great importance for the whole basin in terms of water resources, and streamflow from these catchments has decreased in the last decades. The concept of climate elasticity was used to assess the impacts of climate and land surface change on the streamflow. Results show that for the period 1960-2000 the elasticity of streamflow in relation to precipitation and potential evapotranspiration are 2.10 and -1.04, respectively, indicating that streamflow is more sensitive to precipitation than to potential evapotranspiration. However, land use change played a more important role than climate in reducing streamflow in the 1990s. It is estimated that land use change is responsible for more than 70% of the streamflow reduction in the 1990s, while climate change contributed to less than 30% of the reduction. The precipitation elasticity appears to have an inverse relationship with the runoff coefficient but a positive relationship with the aridity index, showing that the drier the catchment, the more sensitive the streamflow with respect to precipitation change.
机译:在水资源方面,黄河流域的源头集水区对整个流域至关重要,近几十年来,这些集水区的水流减少了。气候弹性的概念用于评估气候和土地表面变化对河流流量的影响。结果表明,在1960-2000年期间,与降水和潜在蒸散量相关的水流弹性分别为2.10和-1.04,这表明水流对降水的敏感性大于对潜在蒸散量的敏感性。但是,在1990年代,土地用途的变化在减少溪流方面起着比气候更重要的作用。据估计,在1990年代,土地用途的变化占溪流减少量的70%以上,而气候变化的减少量不足30%。降水弹性似乎与径流系数成反比,但与干旱指数成正比,这表明流域越干燥,水流对降水变化的敏感性越高。

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