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Saltwater Intrusion Function and Preliminary Application in the Yangtze River Estuary China

机译:长江口咸水入侵作用及其初步应用

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摘要

More attention has been paid to saltwater-intrusion-related problems in recent years. In this research study, a saltwater intrusion function in the Yangtze River Estuary (YRE) was constructed based on the theory of the interactions between energy accumulation and impedance. A MIKE21 model was used to simulate the hydrodynamics of the YRE. Then, through the analysis of the relationships between the river discharge conditions, tidal ranges, and saltwater intrusion, it was determined that, under certain river discharge conditions, the tidal ranges and salinity levels at the stations in the southern branch (SB) of the YRE conformed to S-shaped curve characteristics. Also, the tidal ranges and salinity excessive area rate (SEAR) displayed similar characteristics. Furthermore, the river discharge conditions were also found to match the S-curve characteristics between the two aforementioned relationship features. Therefore, the saltwater intrusion function of the YRE was constructed based on the previously mentioned development rules. Also, the applied quantification methods were elaborated, and the values of the parameters were determined. As a result, the critical river discharge (more than 10,000 m3/s) was obtained, which could withstand large-scale saltwater intrusions. When the river discharge was greater than 30,000 m3/s, the area was considered to be basically without salt water intrusions, and the estuarine ecology was in an optimal state. The saltwater intrusion losses from 2005 to 2015 are also calculated. These findings have important reference value for water dispatching of the YRE in the dry season.
机译:近年来,更多地关注与盐水入侵有关的问题。在这项研究中,基于能量积累和阻抗之间相互作用的理论,构造了长江口(YRE)的盐水入侵函数。使用MIKE21模型来模拟YRE的流体动力学。然后,通过分析河流排泄条件,潮汐范围和盐水入侵之间的关系,确定在某些河流排泄条件下,该河流域南部支流站的潮汐范围和盐度水平。 YRE符合S形曲线特征。另外,潮汐范围和盐度超标面积率(SEAR)表现出相似的特征。此外,还发现河流排放条件与上述两个关系特征之间的S曲线特征相匹配。因此,YRE的盐水入侵功能是根据前面提到的开发规则构建的。此外,阐述了应用的定量方法,并确定了参数值。结果,获得了临界河流量(超过10,000 m 3 / s),可以承受大规模的盐水入侵。当河流流量大于30,000 m 3 / s时,认为该区域基本没有盐水入侵,河口生态处于最佳状态。还计算了2005年至2015年的盐水入侵损失。这些发现对于旱季YRE的调水具有重要的参考价值。

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