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Spacial Distribution of Salinity and theMechanism of Saltwater Intrusion in the ModaomenWater Channel of Pear River Estuary

机译:梨河口磨刀门水道盐度空间分布特征及咸水入侵机理

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Modaomen channel is an important fresh water resource in Pearl River Delta. It has been impacted by saltwater intrusion frequently in the last decade. This has drawn more and more attention from scientists and engineers. The hydrodynamic mechanism of saltwater intrusion is still impercipient. In the present paper, hydrographs of velocity and salinity in the channel are analyzed based on field observations of velocity and salinity of upper, middle, and lower water layers at several stations along the Modaomen channel. It is found that the transport of salinity in Modaomen channel is obviously different from other estuaries. As the tidal range increases from neap to spring tide, the salinity in each water layer decreases unexpectedly. This peculiar phenomenon is attributed to the extraordinary flow process in the channel. When salinity value in each layer and vertical salinity gradient are lower during spring tide, no matter on rising or ebbing tide, the flow velocity monotonously decreases from water surface to the bottom, which is suggested by common sense. However, when salinity values and vertical salinity gradient are higher during neap tide, the flow velocity unexpectedly increases from water surface to the bottom during flood period, and flood duration of the bottom current is surprisingly as long as 15-18 hours. In addition, an inflexional velocity profile may remain amazingly for about 9 hours. This could be driven by the baroclinic pressure under the condition of tides, topography and upstream runoff discharge of this channel.
机译:磨刀门河道是珠江三角洲重要的淡水资源。在过去十年中,它经常受到盐水入侵的影响。这引起了科学家和工程师越来越多的关注。盐水入侵的水动力机制仍然是未知的。本文基于沿墨刀门河沿岸几个站点的上,中,下水层的速度和盐度的实地观测,分析了河道中的速度和盐度的水文图。研究发现,墨刀门河道的盐分运移与其他河口明显不同。随着潮汐范围从潮汐到潮汐增加,每个水层中的盐度会意外降低。这种特殊现象归因于通道中异常的流动过程。当在春季潮汐时各层的盐度值和垂直盐度梯度都较低时,无论是涨潮还是退潮,流速从水面到底部单调下降,这是常识。然而,当在潮汐期间盐度值和垂直盐度梯度较高时,在洪水期间流速从水面到底部意外地增加,并且底部水流的洪水持续时间令人惊讶地长达15-18小时。另外,弯曲速度曲线可能惊人地保持约9小时。这可能是由潮汐,地形和该通道上游径流排放条件下的斜压驱动的。

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