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首页> 外文期刊>Boundary-Layer Meteorology >The Influence of Thermally-Induced Mesoscale Circulations on Turbulence Statistics Over an Idealized Urban Area Under a Zero Background Wind
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The Influence of Thermally-Induced Mesoscale Circulations on Turbulence Statistics Over an Idealized Urban Area Under a Zero Background Wind

机译:零背景风下理想城市中的热致中尺度环流对湍流统计的影响

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The influence of mesoscale circulations induced by urban-rural differential surface sensible heat flux and roughness on convective boundary-layer (CBL) flow statistics over an isolated urban area has been examined using large-eddy simulation (LES). Results are analyzed when the circulations influence the entire urban area under a zero background wind. For comparison, the CBL flow over an infinite urban area with identical urban surface characteristics under the same background meteorological conditions is generated as a control case (without circulations). The turbulent flow over the isolated urban area exhibits a mix of streaky structure and cellular pattern, while the cellular pattern dominates in the control case. The mixed-layer height varies significantly over the isolated urban area, and can be lower near the edge of the urban area than over the rural area. The vertical profiles of turbulence statistics over the isolated urban area vary horizontally and are dramatically different from the control case. The turbulent kinetic energy (TKE) sources include wind shear, convergence, and buoyancy productions, compared to only buoyancy production in the control case. The normalized vertical velocity variance is reduced compared to the control case except in the central urban area where it is little affected. The low-level flow convergence is mainly responsible for the enhanced horizontal velocity variance in the central urban area, while wind shear is responsible for the additional local maximum of the horizontal velocity variance near the middle of the CBL outside the central area. Parameterizations in the prognostic equation for TKE used in mesoscale models are evaluated against the LES results over the isolated urban area. We also discuss conditions under which the urban-induced circulations occur and when they may affect the entire urban area. Given that urban-induced circulations can influence the entire urban area within hours for an urban area of a realistic size, it is inappropriate to directly apply empirical relations of turbulence statistics derived under horizontally-homogenous flow conditions to an urban area. Keywords Isolated urban area - Large-eddy simulation - Mixed layer - Thermally-induced mesoscale circulation - Urban boundary layer
机译:使用大涡模拟(LES)研究了城乡差异表面感热通量和粗糙度引起的中尺度环流对偏远城市对流边界层(CBL)流量统计的影响。当环流在零背景风下影响整个市区时,分析结果。为了进行比较,在相同的背景气象条件下,生成了具有相同城市表面特征的无限市区的CBL流作为控制实例(无环流)。在隔离的市区上空的湍流呈现出条纹结构和蜂窝状图案的混合,而在控制情况下蜂窝状图案占主导。混合层的高度在偏远的市区范围内变化很大,并且在市区边缘附近可能比乡村地区低。偏远市区的湍流统计数据的垂直剖面在水平方向上变化,并且与控制案例有很大不同。相比于控制案例中的浮力生产,湍动能(TKE)源包括风切变,会聚和浮力生产。与正常情况相比,归一化的垂直速度方差减小了,除了在中心城市地区几乎没有影响。低水平的流收敛主要是导致中心城区水平速度方差的增加,而风切变则是导致中心区域外部CBL中部附近水平速度方差的附加局部最大值。中尺度模型中使用的TKE预后方程中的参数化是针对偏远市区的LES结果进行评估的。我们还讨论了城市诱发的环流发生的条件以及它们何时可能影响整个市区。考虑到城市引起的环流可以在数小时之内影响到一个现实规模的市区的整个市区,将水平均质流动条件下得出的湍流统计的经验关系直接应用于市区是不合适的。关键词偏远地区大涡模拟混合层热致中尺度环流城市边界层

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