首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Modelling turbulent boundary layer flow over fractal-like multiscale terrain using large-eddy simulations and analytical tools
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Modelling turbulent boundary layer flow over fractal-like multiscale terrain using large-eddy simulations and analytical tools

机译:使用大涡模拟和分析工具建模湍流边界层流量分形式多尺寸地形

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摘要

In recent years, there has been growing interest in large-eddy simulation (LES) modelling of atmospheric boundary layers interacting with arrays of wind turbines on complex terrain. However, such terrain typically contains geometric features and roughness elements reaching down to small scales that typically cannot be resolved numerically. Thus subgrid-scale models for the unresolved features of the bottom roughness are needed for LES. Such knowledge is also required to model the effects of the ground surface 'underneath' a wind farm. Here we adapt a dynamic approach to determine subgrid-scale roughness parametrizations and apply it for the case of rough surfaces composed of cuboidal elements with broad size distributions, containing many scales. We first investigate the flow response to ground roughness of a few scales. LES with the dynamic roughness model which accounts for the drag of unresolved roughness is shown to provide resolution-independent results for the mean velocity distribution. Moreover, we develop an analytical roughness model that accounts for the sheltering effects of large-scale on small-scale roughness elements. Taking into account the shading effect, constraints from fundamental conservation laws, and assumptions of geometric self-similarity, the analytical roughness model is shown to provide analytical predictions that agree well with roughness parameters determined from LES.
机译:近年来,在与复杂地形上的风力涡轮机阵列相互作用的大气边界层的大型仿真(LES)建模越来越感兴趣。然而,这种地形通常包含几何特征和粗糙度元素,该粗糙度元素达到到通常不能在数字上解析的小尺度。因此,LES需要用于底部粗糙度的未解决特征的子级规模模型。还需要这些知识来建模地面'下面的风电场下面的效果。在这里,我们适应动态方法来确定子级粗糙度参数化,并将其应用于由具有宽尺寸分布的长型元素组成的粗糙表面,其中包含许多尺度。我们首先研究了几个尺度的地面粗糙度的流量响应。具有用于拖动未解决的粗糙度的动态粗糙度模型的动态粗糙度模型,以为平均速度分布提供独立的结果。此外,我们开发了一个分析粗糙度模型,占大规模对小规模粗糙度元素的庇护效果。考虑到遮蔽效果,来自基本保护法的约束以及几何自相似性的假设,显示分析粗糙度模型,提供了与从LES确定的粗糙度参数完全吻合的分析预测。

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