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Numerical simulation of impact of the upstream discharge on salinity at Qingcaosha reservoir

机译:青草沙水库上游排放对盐分影响的数值模拟。

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Saline intrusion in the Yangtze River Estuary has been an unavoidable problem which has a direct impact on water intakes for Shanghai's public drinking, industrial and agricultural usage. By using the Delft3D model, a numerical model is set up for simulation of saltwater intrusion in the Yangtze River estuary. This model is used to study the saltwater intrusion and to predict the salinity changes around Qingcaosha reservoir under the different upstream flow discharge conditions, which related with the operations of the South to North Water Transfer and the Three Gorges. Finally, this paper presents the functional relationships between the salinity at the water intakes of the Qingcaosha reservoir and the fresh water discharge of the Yangtze River and gives out an alarming flow rate of 9,000m3/s at Datong gauging station to prevent the Qingcaosha reservoir from the salt water intrusion.
机译:长江口盐渍化一直是一个不可避免的问题,它直接影响了上海公共饮水,工业和农业用水。利用Delft3D模型,建立了一个数值模型,用于模拟长江口咸水入侵。该模型用于研究在不同上游水流条件下青草沙水库附近的咸水入侵,并预测其盐度变化,这与南水北调和三峡的运行有关。最后,介绍了青草沙水库取水口盐度与长江淡水流量之间的函数关系,并给出了大同市9000m 3 / s的惊人流量。计量站,以防止青草沙水库的咸水入侵。

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