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Presentation of a family of turbulence closure models for stratified shallow water flows and preliminary application to the Rhine outflow region

机译:介绍了用于分层浅水流的湍流闭合模型族,并初步应用于莱茵河流出区域

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摘要

Three turbulence closure schemes, designed for stratified shallow water flows, are presented. They are based upon k-epsilon theory and use respectively two, one or zero transport equations for turbulent variables. The models are first tested on the evolution of a wind-driven turbulent layer in a stratified fluid. The results are at least qualitatively in agreement with observational and experimental data. A discussion is given about the existence of self-similar solutions. The models are compared next with the observational data of the Rhine outflow area. The periodic variation in the density structure, forced by wind and tides and which is clearly visible in the data, is predicted by the model. A physical interpretation of the model results is given in the absence of wind forcing. The effects of estuarine circulation, tidal straining and mixing on the development or breakdown of stratification are well represented by the model calculations.
机译:介绍了针对分层浅水流设计的三种湍流闭合方案。它们基于k-ε理论,并分别使用两个,一个或零个传输方程作为湍流变量。首先对分层流体中风驱动湍流层的演化进行了测试。结果至少在质量上与观察和实验数据一致。讨论了自相似解的存在。接下来,将模型与莱茵河流出区域的观测数据进行比较。由模型预测密度结构的周期性变化(由风和潮汐推动),并且在数据中清晰可见。在没有风力的情况下,对模型结果进行了物理解释。模型计算很好地反映了河口环流,潮汐应变和混合对分层发展或破坏的影响。

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