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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Feedback between residual circulations and sediment distribution in highly turbid estuaries: An analytical model
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Feedback between residual circulations and sediment distribution in highly turbid estuaries: An analytical model

机译:高浊度河口残余循环与泥沙分布之间的反馈:一种分析模型

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Motivated by field studies of the Ems estuary which show longitudinal gradients in bottom sediment concentration as high as O(0.01 kg/m(4)), we develop an analytical model for estuarine residual circulation based on currents from salinity gradients, turbidity gradients, and freshwater discharge. Salinity is assumed to be vertically well mixed, while the vertical concentration profile is assumed to result from a balance between a constant settling velocity and turbulent diffusive flux. Width and depth of the model estuary are held constant. Model results show that turbidity gradients enhance tidally averaged circulation upstream of the estuarine turbidity maximum (ETM), but significantly reduce residual circulation downstream, where salinity and turbidity gradients oppose each other. We apply the condition of morphodynamic equilibrium (vanishing sediment transport) and develop an analytical solution for the position of the turbidity maximum and the distribution of suspended sediment concentration (SSC) along a longitudinal axis. A sensitivity study shows great variability in the longitudinal distribution of suspended sediment with the applied salinity gradient and six model parameters: settling velocity, vertical mixing, horizontal dispersion, total sediment supply, fresh water flow, and water depth. Increasing depth and settling velocity move the ETM upstream, while increasing freshwater discharge and vertical mixing move the ETM downstream. Moreover, the longitudinal distribution of SSC is inherently asymmetric around the ETM, and depends on spatial variations in the residual current structure and the vertical profile of SSC. (c) 2007 Elsevier Ltd. All rights reserved.
机译:根据Ems河口的野外研究,该研究表明底部沉积物浓度的纵向梯度高达O(0.01 kg / m(4)),我们根据盐度梯度,浊度梯度和淡水排放。假定盐度在垂直方向上充分混合,而垂直浓度曲线则假定是由恒定沉降速度和湍流扩散通量之间的平衡引起的。模型河口的宽度和深度保持不变。模型结果表明,浊度梯度增强了河口浊度最大值(ETM)上游的潮汐平均循环,但显着减少了下游盐度和浊度梯度彼此相对的残余循环。我们应用了形态动力学平衡的条件(消失的泥沙输送),并为最大浊度的位置和沿纵轴的悬浮泥沙浓度(SSC)的分布开发了一种解析解决方案。敏感性研究表明,随盐度梯度和六个模型参数的变化,悬浮泥沙的纵向分布变化很大:沉降速度,垂直混合,水平分散,总泥沙供应,淡水流量和水深。增加深度和沉降速度会将ETM移至上游,而增加淡水排放和垂直混合则将ETM移至下游。此外,SSC的纵向分布在ETM周围固有地不对称,并且取决于剩余电流结构的空间变化和SSC的垂直轮廓。 (c)2007 Elsevier Ltd.保留所有权利。

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