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The Effect of Building Shape Modification on Wind Pressure Differences for Cross-Ventilation of a Low-Rise Building

机译:建筑物形状修改对低层建筑物交叉通风的风压差的影响

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The present study investigates the effect of alteration in the building shape due to some common remodelling practice on the wind pressure differences DELTA p for cross-ventilation of a semi-detached low-rise building using Computational Fluid Dynamics (CFD). A commercial code ANSYS CFX was employed to solve the flow governing equations. The standard kappa-epsilon, renormalisation group (RNG) kappa-epsilon and Shear Stress Transport (SST) turbulent models were adopted for comparison and the computed velocity was validated against full-scale measurement data. Results computed with these three turbulent models were able to capture the trend of the measured wind speed at the chosen locations, but there were appreciable differences. Maximum wind pressure differences, DELTA p, for cross-ventilation under the effect of building remodelling was calculated based on the CFD results. At the windward side, the highest DELTA p was provided when expansion is made on the kitchen zone of the back neighbouring house. The house with fencing provided the lowest DELTA p value. In general, for all types of building remodelling, DELTA p value for houses on the windward side was higher by 447 percent (on the average DELTA p value) compared to the houses on the leeward side.
机译:本研究使用计算流体力学(CFD)研究了一些常见的重塑实践对半独立式低层建筑物交叉通风的风压差DELTA p的影响,从而改变了建筑物的形状。商业代码ANSYS CFX用于求解流量控制方程。采用标准κ-ε,重归一化组(RNG)κ-ε和剪切应力传递(SST)湍流模型进行比较,并针对全尺寸测量数据验证了计算速度。使用这三个湍流模型计算出的结果能够捕获所选位置处测得的风速趋势,但存在明显差异。根据CFD结果,计算了在建筑物改建的影响下交叉通风的最大风压差DELTA p。在迎风侧,当对后邻房屋的厨房区域进行扩展时,将提供最高的DELTA p。带围栏的房屋提供最低的DELTA p值。通常,对于所有类型的建筑物改建,迎风侧房屋的DELTA p值比背风侧房屋的DELTA p值高447%(在平均DELTA p值上)。

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