首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Numerical investigation of the influence of topography on simulated downburst wind fields
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Numerical investigation of the influence of topography on simulated downburst wind fields

机译:地形对模拟下突风场影响的数值研究

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A, dry, non-hydrostatic sub-cloud model is used to simulate an isolated stationary downburst wind event to study the influence topographic features have on the near-ground wind structure of these storms. It was generally found that storm maximum wind speeds could be increased by up to 30% because of the presence of a topographic feature at the location of maximum wind speeds. Comparing predicted velocity profile amplification with that of a steady flow impinging jet, similar results were found despite the simplifications made in the impinging jet model. Comparison of these amplification profiles with those found in the simulated boundary layer winds reveal reductions of up to 30% in the downburst cases. Downburst and boundary layer amplification profiles were shown to become more similar as the topographic feature height was reduced with respect to the outflow depth.
机译:一个干燥的非静水子云模型被用来模拟一个孤立的平稳的突发性暴风事件,以研究地形特征对这些风暴的近地风结构的影响。通常发现,由于在最大风速位置处存在地形特征,风暴的最大风速可以增加高达30%。将预测的速度分布放大倍数与稳定流撞击射流的放大率进行比较,尽管在撞击射流模型中进行了简化,但发现的结果相似。将这些放大曲线与在模拟边界层风中发现的放大曲线进行比较后发现,在暴发情况下降幅最多可达到30%。当降低地形特征高度相对于流出深度时,下突和边界层放大曲线显示出越来越相似。

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