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首页> 外文期刊>Advances in Water Resources >Three-dimensional numerical modelling of wind-driven circulation in a homogeneous lake
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Three-dimensional numerical modelling of wind-driven circulation in a homogeneous lake

机译:均质湖中风循环的三维数值模拟

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A three-dimensional numerical model has been developed to study wind-induced circulation patterns in a shallow homogeneous lake with a complex bathymetry. The governing equations are the unsteady Reynolds-Averaged Navier-Stokes equations in which the non-hydrostatic pressure distribution has been included. The model was tested against analytical solutions and laboratory data for wind-induced currents and then applied to Esthwaite Water, a small lake in Cumbria, UK. The model was used to study the main model parameters and to generate typical circulation patterns for a variety of conditions in the lake. Simulations showed that a non-hydrostatic pressure distribution did not have any noticeable influence on the overall circulation pattern in the lake. However, comparisons with field data at some measurement stations in the near-shore region with sharply varying bottom topography showed that the hydrodynamic pressure component had some influence on the vertical velocity profile.
机译:已经开发了三维数值模型来研究具有复杂测深的浅层均质湖中的风循环模式。控制方程是其中包含非静水压力分布的非稳态雷诺平均Navier-Stokes方程。该模型针对风流产生的分析解决方案和实验室数据进行了测试,然后应用于英国Cumbria的一个小湖Esthwaite Water。该模型用于研究主要模型参数,并为湖泊中的各种条件生成典型的环流模式。模拟表明,非静水压力分布对湖泊的整体环流模式没有任何明显的影响。然而,与近海区域底部地形急剧变化的一些测量站的现场数据比较表明,水动力压力分量对垂直速度剖面有一定影响。

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