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Temporal and spatial changes of suspended sediment concentration and resuspension in the Yangtze River estuary

机译:长江口悬浮泥沙浓度及重悬的时空变化

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A detailed analysis of suspended sediment concentration (SSC) variations over a year period is presented using the data from 8 stations in the Yangtze River estuary and its adjacent waters, together with a discussion of the hydrodynamic regimes of the estuary. Spatially, the SSC from Xuliujing downwards to Hangzhou Bay increases almost constantly, and the suspended sediment in the inner estuary shows higher concentration in summer than in winter, while in the outer estuary it shows higher concentration in winter than in summer, and the magnitude is greater in the outer estuary than in the inner estuary, greater in the Hangzhou Bay than in the Yangtze River estuary. The sediments discharged by the Yangtze River into the sea are resuspended by marine dynamics included tidal currents and wind waves. Temporally, the SSC shows a pronounced neap-spring tidal cycle and seasonal variations. Furthermore, through the analysis of dynamic mechanism, it is concluded that wave and tidal current are two predominant factors of sediment resuspension and control the distribution and changes of SSC, in which tidal currents control neap-spring tidal cycles, and wind waves control seasonal variations. The ratio between river discharge and marine dynamics controls spatial distribution of SSC.
机译:利用长江河口及其邻近水域的8个站点的数据,详细分析了一年中的悬浮沉积物浓度(SSC)变化,并对河口的水动力状况进行了讨论。在空间上,从徐六井下到杭州湾的SSC几乎持续增加,内河口的悬浮泥沙夏季浓度高于冬季,而外河口的冬季泥沙浓度高于夏季,强度为外河口大于内河口,杭州湾大于长江口。长江排放入海的沉积物被潮汐流和风浪等海洋动力所悬浮。 SSC暂时显示出明显的小涌潮和季节性变化。此外,通过动力机制分析,得出的结论是,波浪和潮流是沉积物重悬并控制SSC分布和变化的两个主要因素,其中潮流控制着潮汐潮汐周期,而风浪则控制了季节变化。 。河流流量与海洋动力学之比控制着南南合作的空间分布。

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