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Effect of Dikes on Saltwater Intrusion Under Various Wind Conditions in the Changjiang Estuary

机译:堤防对长江河口各种风条件下盐水侵犯的影响

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摘要

To improve navigation, the deep waterway project (DWP) was implemented in the North Passage of the Changjiang Estuary in 1998, which includes a deep channel and two dikes protecting it. By altering estuarine morphology, the DWP can affect saltwater intrusion and mixing, with implications for drinking water intake and supply. In this study, we employ a numerical model to study the influence of dikes of the DWP on saltwater intrusion in the estuary under the climatic and persistent strong northerly wind conditions that occurred in February 2014. The model results show that the dikes prevent the southward transport of relatively low-salinity water at the mouth of the North Channel (NC) under climatic wind conditions, resulting in the weakening of saltwater intrusion and mixing in this channel. Under persistent strong northerly wind conditions, relatively high-salinity water is transported southward to the mouth of NC and blocked by the dikes causing a water level rise at the mouth of the NC. As a result, a large amount of high-salinity water adverted into the NC and then out to the sea from the South Chanel, forming a counterclockwise horizontal circulation. The salinity increases abnormally, but mixing decreases in the NC for no more salinity variance input with the implementation of the DWP. Overall, the DWP favors water intake for the reservoir in NC under climatic wind conditions and is unfavorable to water intake under persistent strong northerly winds (>9 m/s), which can lead to extremely severe saltwater intrusion.
机译:为了提高导航,深水道工程(DWP)在1998年的长江口北路的北段中实施,其中包括深入的频道和两个堤防保护它。通过改变乙酸碱形态,DWP可以影响咸水侵入和混合,并有助于饮用水进口和供应。在这项研究中,我们采用了一个数字模型来研究Dikes Dikes Dikes在2014年2月发生的气候和持续强大的北风条件下河口盐水侵入的影响。模型结果表明,堤防防止南方运输在气候风条件下北路口(NC)口处相对低的盐度水,导致盐水侵入和混合在该通道中疲软。在持续强劲的北风条件下,相对高的盐水水向南运输到NC的口腔并被堤坝阻挡,导致NC口处的水位升高。结果,大量的高盐度水被广告到NC中,然后从南方的南部出来,形成逆时针水平循环。盐度异常增加,但在NC中混合减少,对于DWP的实施,NC不再有盐度方差输入。总体而言,DWP在气候风条件下对NC的储层进行了水摄入量,并且在持续强大的北风(> 9米/磅)下的水摄入不利,这可能导致极其严重的盐水侵扰。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|1854-1854|共1页
  • 作者

    L. Li; J. Zhu; R.J. Chant;

  • 作者单位

    State Key Laboratory of Estuarine and Coastal Research East China Normal University Shanghai China;

    State Key Laboratory of Estuarine and Coastal Research East China Normal University Shanghai China;

    State Key Laboratory of Estuarine and Coastal Research East China Normal University Shanghai China;

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