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首页> 外文期刊>Boundary-Layer Meteorology >The Effects of Building Representation and Clustering in Large-Eddy Simulations of Flows in Urban Canopies
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The Effects of Building Representation and Clustering in Large-Eddy Simulations of Flows in Urban Canopies

机译:建筑物表示法和聚类法在城市冠层大涡流模拟中的作用

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We perform large-eddy simulations of neutral atmospheric boundary-layer flow over a cluster of buildings surrounded by relatively flat terrain. The first investigated question is the effect of the level of building detail that can be included in the numerical model, a topic not yet addressed by any previous study. The simplest representation is found to give similar results to more refined representations for the mean flow, but not for turbulence. The wind direction on the other hand is found to be important for both mean and turbulent parameters. As many suburban areas are characterised by the clustering of buildings and homes into small areas separated by surfaces of lower roughness, we look at the adjustment of the atmospheric surface layer as it flows from the smoother terrain to the built-up area. This transition has unexpected impacts on the flow; mainly, a zone of global backscatter (energy transfer from the turbulent eddies to the mean flow) is found at the upstream edge of the built-up area. Keywords Building representation - Global backscatter - Heterogeneous terrain - Surface roughness - Turbulent kinetic energy - Urban boundary layer - Urban canopy
机译:我们对由相对平坦的地形包围的建筑物群进行中性大气边界层流动的大涡模拟。首先要调查的问题是数值模型中可以包括的建筑物细节水平的影响,这是以前任何研究都未解决的话题。对于平均流量,发现最简单的表示可得到与更精炼的表示类似的结果,但对于湍流则不会。另一方面,发现风向对均值和湍流参数都很重要。由于许多郊区的特点是建筑物和房屋聚集在由低粗糙度表面隔开的小区域中,因此我们考察了大气表层从较平整的地面流向建成区时的调整情况。这种过渡会对流量产生意想不到的影响。主要是在集结区的上游边缘发现了一个整体的反向散射区(能量从湍流涡流到平均流)。关键词建筑表征-全球背向散射-异质地形-表面粗糙度-湍动能-城市边界层-城市冠层

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