Effect of Opening Size on Wind-Driven Cross Ventilation

Lip Kean Moey, Yao Horng Sing, Vin Cent Tai, Tze Fong Go, Yaw Yoong Sia
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引用次数: 3

Abstract

The opening size is important to the ventilation of building because various opening sizes affects the ventilation performance for building. Therefore, the objective of this study is to investigate the effect of opening size on indoor airflow characteristics of naturally ventilated building model. The numerical simulation with steady RANS equations was used. A total of six different opening ratios, namely 4:1, 2:1, 1:1, 1:2, 4:9 and 1:4 were considered in this study. The results of mesh independence study and model validation were also in good agreement with previous study. The simulation results show that velocity and pressure of the indoor air, ventilation rate, and pressure coefficient are highly dependent on the opening ratio. The velocity and pressure contour indicate that the lower the opening ratio, the higher the velocity and subsequently lower pressure inside the building. In addition, the pressure coefficient and ventilation rate are also increased as the opening ratio decreases. Besides, the results indicate that percentage increase in ventilation rate of opening ratio 4:1 and 2:1, 2:1 and 1:1, and 1:1 and 1:2 is higher than those of opening ratio for 1:2 and 4:9, 4:9 and 1:4. The study concluded that pairing a large outlet and small inlet leads to increase in better ventilation rate for building.
开窗尺寸对风动交叉通风的影响
开窗大小对建筑物通风具有重要意义,不同的开窗大小直接影响建筑物的通风性能。因此,本研究的目的是研究开窗尺寸对自然通风建筑模型室内气流特性的影响。采用稳态RANS方程进行数值模拟。本研究共考虑了4:1、2:1、1:1、1:2、4:9和1:4 6种不同的开孔比例。网格独立性研究和模型验证的结果也与前人的研究结果吻合较好。仿真结果表明,室内空气的流速和压力、通风量和压力系数与开度比有很大的关系。流速和压力曲线表明,开度比越低,流速越高,建筑物内压力越低。此外,压力系数和通风量也随开度比的减小而增大。此外,结果表明,开启比为4:1和2:1、2:1和1:1、1:1和1:2时通气量的增加百分比高于开启比为1:2和4:9、4:9和1:4时的通气量增加百分比。研究得出结论,将大出口和小进口配对可以提高建筑物的通风率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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