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Cumulative Effect of Cascade Hydropower Development on Water Quantity Process in the Upper Wu River of Western China

机译:梯级水电开发对西部吴武河水量过程的累积作用

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The Wu River Basin in western China is experiencing extensive hydropower development. Concerns have been raised about the consequences of the development for the ecological environment. In this paper, we assess the cumulative effect of six hydropower stations on watei quantity process in the upper Wu River by using a combination of measured data and a distributed hydrological model based on MIKE11. The results show that the operation of hydropower stations averaged the runoff distribution that increased the November-April discharge by 10-176% and decreased the May-October discharge by 6-38%. Furthermore, the effect of averaging runoff distribution would be more obvious along with the adjustment of hydropower cascade stations due to cumulative effect, the differential ratio of mean discharge in flood season and dry season decreased from 79.3% to 20.4% along with the hydropower stations. Thus the water quantity process in the upper Wu River has been significantly altered by cascade hydropower development, but what the consequences are for the ecological environment, needs further study.
机译:中国西部的吴江流域正在经历广泛的水力发电开发。对生态环境的发展的后果提出了担忧。在本文中,我们使用基于MIKE11的分布式水文模型的组合来评估六水电站在吴河中六水电站对Watei数量过程的累积效应。结果表明,水电站的运作平均径流分布,增加11月至4月下降10-176%,并降低5月至10月下降6-38%。此外,随着水电级联站的调整,平均径流分布的效果随着累积效应而调整,洪水季节和干燥季节的平均排放量与水电站的差异从79.3%降至20.4%。因此,通过级联水电开发,上武河中的水量过程得到了显着改变,但后果对于生态环境而言,需要进一步研究。

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