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Turbulent Transfer Between Street Canyons and the Overlying Atmospheric Boundary Layer

机译:街道峡谷与上覆大气边界层之间的湍流传递

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摘要

The turbulent exchange of momentum between a two-dimensional cavity and the overlying boundary layer has been studied experimentally, using hot-wire anemome-try and particle image velocimetry (PIV). Conditions within the boundary layer were varied bychanging the width of the canyons upstream of the test canyon, whilst maintaining the square geometry of the test canyon. The results show that turbulent transfer is due to the coupling between the instabilities generated in the shear layer above the canyons and the turbulent structures in the oncoming boundary layer. As a result, there is no single, unique velocity scale that correctly characterizes all the processes involved in the turbulent exchange of momentum across the boundary layer. Similarly, there is no single velocity scale that can characterize the different properties of the turbulent flow within the canyon, which depends strongly on the way in which turbulence from the outer flow is entrained into the cavity and carried round by the meanflow. The results from this study will be useful in developing simple parametrizations for momentum exchange in the urban canopy, in situations where the street geometry consists principally of relatively long, uniform streets arranged in gridlike patterns; they are unlikely to be applicable to sparse geometries composed of isolated three-dimensional obstacles.
机译:使用热线风速仪和粒子图像测速仪(PIV)对二维空腔与上覆边界层之间的动量湍流交换进行了实验研究。通过更改测试峡谷上游峡谷的宽度来改变边界层内的条件,同时保持测试峡谷的方形几何形状。结果表明,湍流的传递是由于峡谷上方剪切层中产生的不稳定性与迎面而来的边界层中的湍流结构之间的耦合引起的。结果,就没有一个唯一的,独特的速度标度可以正确地描述跨边界层动量湍流交换所涉及的所有过程。类似地,没有一个单一的速度标度可以表征峡谷内湍流的不同特性,这在很大程度上取决于外流的湍流被夹带到空腔中并被平均流环绕的方式。这项研究的结果将有助于开发简单的参数化方案,以在城市雨棚中的街道几何形状主要由较长且均匀的,以网格状排列的街道组成的情况下进行动量交换。它们不太可能适用于由孤立的三维障碍物组成的稀疏几何体。

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