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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Lateral circulation driven by boundary mixing and the associated transport of sediments in idealized partially mixed estuaries
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Lateral circulation driven by boundary mixing and the associated transport of sediments in idealized partially mixed estuaries

机译:在理想的部分混合河口中,边界混合和相关的泥沙输送驱动横向循环

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摘要

A three-dimensional, hydrostatic, primitive equation numerical model with modern turbulence closures is used to explore lateral circulation and the associated transport of sediments in idealized, moderately to highly stratified estuaries. The model results suggest that boundary mixing on a sloping bottom can drive a significant amount of lateral circulation. This mechanism has received little attention to date in the estuarine literature. Good agreement with an analytical solution and similar vertical structures of lateral flows to observations from the Hudson River estuary support the importance of the boundary mixing mechanism. Boundary mixing is at least as important as differential advection for the modeled scenarios, when the two mechanisms arc evaluated using the salt balance equation for model runs without rotation. Linearly superposing analytical solutions for lagged boundary mixing lateral flow and Ekman-forced lateral flow yields a good representation of the near-bottom lateral flow from the model with rotation. The 2h lag required for the boundary mixing solution is roughly equal to the vertical diffusion time scale, indicating that lateral flow adjustment depends on development of a bottom mixed layer. Sediment dynamics at cross sections seaward and landward of the salt intrusion are very different. Seaward of the salt intrusion, sediments are eroded in the channel and preferentially deposited on the right slope (looking seaward), mainly due to the combination of high sediment concentration in the channel during flood with strong up-slope transport on that side (tidal pumping). Lateral sediment re-distribution landward of the salt intrusion is negligible due to weak residual lateral circulation. (c) 2008 Elsevier Ltd. All rights reserved.
机译:使用具有现代湍流闭塞的三维静压原始方程数值模型,研究了理想化,中度至高度分层河口的横向循环以及相关的沉积物运移。模型结果表明,倾斜底部的边界混合可以驱动大量的横向循环。迄今为止,这种机制在河口文献中很少受到关注。与解析解决方案和侧向水流的垂直结构与哈德逊河河口观测的相似垂直结构的良好一致性支持了边界混合机制的重要性。当两种机制使用盐平衡方程评估模型运行而没有旋转时,边界混合对于建模的方案至少与微分对流同样重要。滞后边界混合侧向流和Ekman强迫侧向流的线性叠加解析解可以很好地表示旋转模型的近底部侧向流。边界混合溶液所需的2h滞后大致等于垂直扩散时间标度,表明侧向流量调节取决于底部混合层的发育。盐分侵入的海向和陆向截面的沉积物动力学有很大不同。盐分侵入的海面,沉积物在河道中被侵蚀,并优先沉积在右侧斜坡上(看向海面),这主要是由于洪水期间河道中的高沉积物浓度与该侧的强上坡运输(潮汐抽水)的结合)。由于残留的侧向循环较弱,盐分侵入的侧向沉积物重新分布向内可忽略不计。 (c)2008 Elsevier Ltd.保留所有权利。

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