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Effects of spatial wind inhomogeneity and turbulence anisotropy on circulation in an elongated basin: A simplified analytical solution

机译:空间风的不均匀性和湍流各向异性对细长盆地中环流的影响:一种简化的解析解

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The response of a closed basin to wind forcing has been studied extensively, but the role of turbulence anisotropy coupled with spatial wind inhomogeneity has never been considered explicitly. An analytical solution is presented for steady state hydrodynamics, considering the central part of a constant-depth, elongated basin with a laterally varying wind, and a homogeneous, yet anisotropic, eddy viscosity tensor. The solution is derived both for a single-layer and for a two-layer basin, which is representative of a stratified lake with a well-developed thermocline. Since the focus is on the short-term barotropic reaction to wind forcing, which determines the type of lake circulation, baroclinic effects are neglected as a first approximation. In this case, the development of planimetric (depth-averaged) circulation superimposed on circulation in the vertical plane can be determined as a function of wind lateral variation and a few dimensionless parameters. The relevance of such an analytical solution is twofold. Firstly, the knowledge of the prevailing circulation can help in the choice of the best type of numerical model (three-dimensional vs. two-dimensional, depth- or lateral-averaged). Secondly, it shows the importance of correct estimates of both vertical and horizontal eddy viscosity, whereas the latter is not usually considered as an important parameter in lake hydrodynamics modeling.
机译:封闭盆地对强迫作用的响应已得到广泛研究,但从未明确考虑湍流各向异性与空间风的不均匀性的关系。针对稳态流体力学提出了一种解析解决方案,其中考虑了一个恒定深度的细长盆地的中心部分,该盆地具有横向变化的风,并且具有均匀但各向异性的涡流粘度张量。该解决方案既适用于单层盆地,也适用于两层盆地,这代表了一个具有发达温跃线的分层湖泊。由于重点在于对风的短期正压反应,这决定了湖泊环流的类型,因此,斜压效应被忽略不计。在这种情况下,可以根据风侧向变化和一些无量纲参数来确定叠加在垂直平面上的平面(深度平均)循环的发展。这种分析解决方案的相关性是双重的。首先,了解流行的环流有助于选择最佳类型的数值模型(三维或二维,深度或横向平均)。其次,它显示了正确估计垂直涡旋粘度和水平涡旋粘度的重要性,而后者在湖泊水动力模型中通常不被视为重要参数。

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