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首页> 外文期刊>Science and Technology for the Built Environment >Numerical simulation of the effects of secondary roughness in the form of extension to arrays of terraced houses on pedestrian wind
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Numerical simulation of the effects of secondary roughness in the form of extension to arrays of terraced houses on pedestrian wind

机译:在行人风中延伸延伸形式的二次粗糙度效果的数值模拟

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摘要

The present study used large eddy simulations (LES) to examine the pedestrian wind velocity distribution for several cases of terraced houses with extensions. Two simulation cases of idealized terraced houses were performed with extension elements in square (E-SQ) and staggered (E-ST) arrangements. These extension elements were treated as secondary roughness. A simulation of the terraced houses without extension (NE) was also performed to provide a baseline comparison. The mean velocity distribution from LES showed that the secondary roughness strictly limited the flow penetration in both cases, which reduced the turbulent kinetic energy (TKE) inside the canyon. In comparison, E-ST had a stronger effect on TKE than E-SQ with a maximum difference of 19%. Downwind extension elements severely reduced the wind speed at the street and neighbors' houses by about 40% to 50%. However, upwind extension elements increased the wind speed at neighbors' houses about threefold compared to NE. The weak pedestrian wind speed at upwind houses was improved about twelve times with E-SQ and eight times with E-ST when neighbors extended their houses. This indicates that the secondary roughness significantly influences the wind distribution around buildings. Selecting the extension area is important for providing effective outdoor flow conditions.
机译:本研究采用了大型涡流模拟(LES)来检查带有延伸的几个露台房屋的行人风速分布。使用方形(E-SQ)和交错(E-ST)布置的延伸元件进行了两个理想化梯形房屋的模拟案例。这些延伸元素被视为二次粗糙度。还进行了没有延伸(NE)的梯形房屋的模拟,以提供基线比较。来自LES的平均速度分布表明,二次粗糙度严格限制了两种情况下的流动渗透,这减少了峡谷内部的湍流动能(TKE)。相比之下,E-ST对TKE的影响力比E-SQ的最大差异为19%。下行延伸元素严重减少了街道的风速,邻居房屋的风速约为40%至50%。然而,与NE相比,Upwind延伸元件增加了邻居房屋的风速。当邻居延伸房屋时,荷载房屋的弱行人风速大约有12次和E-ST的八次。这表明二次粗糙度显着影响建筑物周围的风分布。选择扩展区域对于提供有效的室外流动条件非常重要。

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