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Wind tunnel experiments on cross-ventilation flow of a generic building with contaminant dispersion in unsheltered and sheltered conditions

机译:在不受遮挡和遮蔽的条件下,污染物扩散的普通建筑物的交叉通风流的风洞实验

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Recently, computational fluid dynamics (CFD) has been widely used for the prediction and analysis of cross-ventilation flows in buildings. In this study, detailed wind tunnel experiments were performed on the cross-ventilation flow of a generic single-zone building in order to compile a validation database for CFD methods. Both the velocity fields and the contaminant concentration fields were measured and investigated. First, the fundamental characteristics of the velocity and concentration fields in a cross-ventilated flow were investigated for the building in unsheltered conditions. Next, the distributions of turbulent scalar fluxes in a cross-ventilated flow, which have been rarely reported, were also measured, and the scalar transport mechanism was examined based on the results. Finally, the effect of the surrounding buildings on the cross-ventilation flow was investigated. This study shows that the turbulent velocity fluctuations and concentration fluctuations are clearly generated by different mechanisms. These results can be used to effectively and successfully validate CFD methods applied to the flow and concentration fields of cross-ventilation flows. (C) 2015 Elsevier Ltd. All rights reserved.
机译:近来,计算流体动力学(CFD)已被广泛用于建筑物中的交叉通风流的预测和分析。在这项研究中,对通用单区域建筑物的交叉通风流进行了详细的风洞实验,以便为CFD方法编译验证数据库。测量并研究了速度场和污染物浓度场。首先,研究了在不受遮挡的条件下建筑物的交叉通风流中速度和浓度场的基本特征。接下来,还测量了鲜有报道的交叉通风流中的湍流标量通量的分布,并根据结果检查了标量传输机制。最后,研究了周围建筑物对交叉通风流的影响。这项研究表明,湍流速度波动和浓度波动显然是由不同的机制产生的。这些结果可用于有效且成功地验证应用于交叉通风流的流量和浓度场的CFD方法。 (C)2015 Elsevier Ltd.保留所有权利。

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