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Effects of Lateral Window Position and Wind Direction on Wind-Driven Natural Cross Ventilation of a Building: A Computational Approach

机译:横向窗户位置和风向对建筑物风驱动自然交叉通风的影响:一种计算方法

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Energy is saved when an effective natural ventilation system can provide comfort air to the occupants in a building by replacing a mechanical ventilation system. It also minimizes the risk of the environmental pollution and the global warming. A one story, full scale building was considered to carry out a comparative study of three different cases of wind-driven natural (WDN) cross ventilation with the help of computational fluid dynamics (CFD). In each case, the location of window was changed in lateral direction to predict the probable position for optimum ventilation performance and the angle of wind was varied to check the sensitivity of the wind direction on the flow field. After validating the current methodology through two satisfactory comparisons with the experimental investigations, the governing equations subjected to the corresponding boundary conditions were solved using commercial software and then the results were analyzed. A better location for the windows in each case was proposed. The ventilation purpose was served quite well even if the wind angle was changed in a moderate range from the original design. Furthermore, the velocity components, ventilation rate, surface pressure, ventilation time, and so forth in each case were investigated and compared extensively with those in other cases.
机译:当有效的自然通风系统可以通过替换机械通风系统为建筑物中的居住者提供舒适的空气时,可以节省能源。它还将环境污染和全球变暖的风险降到最低。在计算流体动力学(CFD)的帮助下,一个单层完整建筑被认为可以对三种不同情况的自然风(WDN)交叉通风进行比较研究。在每种情况下,都在横向方向上改变窗口的位置,以预测最佳通风性能的可能位置,并且改变风角以检查风向对流场的敏感性。在通过两次令人满意的与实验研究的比较验证了当前方法之后,使用商业软件求解了受相应边界条件约束的控制方程,然后对结果进行了分析。提出了在每种情况下窗户的更好位置。即使在原始设计的适度范围内改变风角,通风效果也很好。此外,研究了每种情况下的速度分量,通风速率,表面压力,通风时间等,并将其与其他情况进行了广泛的比较。

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