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Wind speed acceleration around a single low solid roughness in atmospheric boundary layer

机译:大气边界层中单个低固体粗糙度周围的风速加速

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摘要

Air flow around vegetation is crucial for particle transport (e.g., dust grains, seeds and pollens) in atmospheric boundary layer. However, wind acceleration around vegetation is still not well understood. In this work, air flow around a single low solid roughness element (representing a dense shrub patch or clump) in atmospheric boundary layer was numerically investigated, with emphasizing wind acceleration zone located at the two lateral sides. The maximum value of dimensionless horizontal wind speed as well as its location of occurrence and the geometrical morphology and area of wind acceleration zone were systematically studied. It reveals that they could alter significantly with the change of roughness basal shape. The maximum value of dimensionless resultant horizontal speed decreases monotonously with observation height, while the area of wind acceleration zone shows a non-linear response to observation height. The dependence of the maximum speed location on observation height is generally weak, but may vary with roughness basal shape. These findings could well explain the disagreement among previous field observations. We hope that these findings could be helpful to improve our understanding of aeolian transport in sparsely vegetated land in arid and semi-arid region, and wind dispersals of seeds and pollens from shrub vegetation.
机译:植被周围的气流对于大气边界层中的颗粒运输(例如尘粒,种子和花粉)至关重要。但是,关于植被周围的风速加速度仍然知之甚少。在这项工作中,对大气边界层中单个低固体粗糙度元素(代表致密的灌木丛或块)周围的气流进行了数值研究,重点是位于两侧的风加速区。系统地研究了无量纲水平风速的最大值及其发生位置,风加速区的几何形态和面积。结果表明,随着粗糙度基础形状的变化,它们可能发生显着变化。无量纲合成水平速度的最大值随观测高度单调减小,而风加速区的面积则对观测高度呈非线性响应。最大速度位置对观测高度的依赖性通常较弱,但可能随粗糙度基础形状而变化。这些发现可以很好地解释以前的实地观察之间的分歧。我们希望这些发现有助于我们了解干旱和半干旱地区稀疏植被土地上的风沙运输,以及灌木植被中种子和花粉的风传播。

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