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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Sediment suspension under sheet flow conditions beneath random waves plus current
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Sediment suspension under sheet flow conditions beneath random waves plus current

机译:薄板流动条件下随机波加水流下的泥沙悬浮

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The suspended sediment concentration under large random waves alone as well as under large random waves plus current has been examined by a classical sediment diffusion model in conjunction with a dynamic turbulent boundary layer model based on the linearized boundary layer equations with horizontally uniform forcing. The turbulence closure is provided by a high Reynolds number k-epsilon model. Under such conditions wave or current-induced sea bed ripples are washed out, such that a sheet flow and a suspension layer of high sediment concentration exist.This sediment diffusion model has been verified against a range of existing measurements, for regular waves alone, as well as regular waves plus current. Overall, these comparisons show that the present sediment diffusion model does a fair job except in the outer suspension layer, where the existence of a `convective' peak near flow reversal becomes important. These peaks cannot be captured by standard sediment diffusion models.Correlations between suspended sediment concentration and boundary layer quantities due to the grouping of the largest waves in a realistic sea state have been examined. Sediment pump-up under a wave group is visualized. Estimates of probability density functions for individual sediment concentration maxima are given. Superposition of a mean current on the waves at the outer boundary induces a mean sediment flux as well as an enhancement of the suspended sediment concentration; these effects have been demonstrated and quantified. A non-zero angle between the waves and the current leads to a decrease in both the mean sediment concentration and the mean sediment flux. The resulting mean sediment concentration and mean sediment flux for random waves plus current has been shown to agree reasonably well with those obtained by an equivalent sinusoidal wave plus current. Overall, the results obtained in this paper support the application of an equivalent wave to predict mean sediment concentrations, mean sediment fluxes, as well as the total sediment transport under sheet flow conditions. (C) 2004 Elsevier Ltd. All rights reserved.
机译:通过经典的泥沙扩散模型,结合基于水平边界强迫线性化边界层方程的动态湍流边界层模型,研究了单独的大随机波以及大随机波加电流下的悬浮泥沙浓度。湍流闭合由高雷诺数k-ε模型提供。在这种情况下,波浪或海流引起的海床波纹被冲刷掉,从而形成了片状流和高沉积物浓度的悬浮层。该沉积物扩散模型已针对一系列现有测量方法进行了验证,仅对于常规波浪而言,即以及规则波加电流。总体而言,这些比较表明,当前的沉积物扩散模型除在外部悬浮层中表现出色外,在外部悬浮层中,在逆流附近存在“对流”峰变得很重要。这些峰值不能用标准的沉积物扩散模型捕获。研究了在现实海况下由于最大波浪的分组而造成的悬浮物浓度与边界层量之间的相关性。可视化波浪组下的泥沙泵送。给出了各个沉积物浓度最大值的概率密度函数的估计。平均电流叠加在外边界的波浪上会引起平均的泥沙通量以及悬浮泥沙浓度的增加。这些影响已经得到证明和量化。波浪和水流之间的非零角度会导致平均沉积物浓度和平均沉积物通量降低。结果表明,随机波加电流产生的平均沉积物浓度和平均沉积物通量与等效正弦波加电流获得的结果相当吻合。总体而言,本文获得的结果支持应用等效波来预测平均沉积物浓度,平均沉积物通量以及在板流条件下的总沉积物输送。 (C)2004 Elsevier Ltd.保留所有权利。

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