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城市冠层速度剖面是呈指数形式的吗?

Are Urban-Canopy Velocity Profiles Exponential?

作者信息

Castro Ian P

机构信息

Aerodynamics and Flight Mechanics, Faculty of Engineering and the Environment, University of Southampton, Highfield, Southampton, SO17 1BJ UK.

出版信息

Boundary Layer Meteorol. 2017;164(3):337-351. doi: 10.1007/s10546-017-0258-x. Epub 2017 Jun 8.

Abstract

Using analyses of data from extant direct numerical simulations and large-eddy simulations of boundary-layer and channel flows over and within urban-type canopies, sectional drag forces, Reynolds and dispersive shear stresses are examined for a range of roughness densities. Using the spatially-averaged mean velocity profiles these quantities allow deduction of the canopy mixing length and sectional drag coefficient. It is shown that the common assumptions about the behaviour of these quantities, needed to produce an analytical model for the canopy velocity profile, are usually invalid, in contrast to what is found in typical vegetative (e.g. forest) canopies. The consequence is that an exponential shape of the spatially-averaged mean velocity profile within the canopy cannot normally be expected, as indeed the data demonstrate. Nonetheless, recent canopy models that allow prediction of the roughness length appropriate for the inertial layer's logarithmic profile above the canopy do not seem to depend crucially on their (invalid) assumption of an exponential profile within the canopy.

摘要

通过对现有直接数值模拟以及城市型冠层上方和内部边界层与通道流的大涡模拟数据进行分析,研究了一系列粗糙度密度下的截面阻力、雷诺应力和色散剪应力。利用空间平均平均速度剖面,这些量可推导出冠层混合长度和截面阻力系数。结果表明,与典型植被(如森林)冠层的情况相反,为生成冠层速度剖面分析模型所需的关于这些量行为的常见假设通常是无效的。结果是,正如数据所示,通常不能期望冠层内空间平均平均速度剖面呈指数形状。尽管如此,最近能够预测适用于冠层上方惯性层对数剖面的粗糙度长度的冠层模型,似乎并不关键地依赖于其(无效的)冠层内指数剖面假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f773/6979513/b4287a2b65d5/10546_2017_258_Fig1_HTML.jpg

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