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Sensitivity of air change rates in a naturally ventilated atrium space subject to variations in external wind speed and direction

机译:自然通风的中庭空间中空气变化率的敏感性,受外部风速和风向的影响

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Design guidelines for natural ventilation (NV) in buildings focus on the potential hourly air change (ACH) rates based on the building space parameters. Critically, external airflow data is often assumed on the basis of a single mean wind speed and an associated prevailing wind direction. This can result in significant variation in ventilation rates and comfort conditions when non-design external wind conditions prevail. This paper describes a CFD study aimed at examining the influence of variations in external wind speed and direction on the air change rate for the atrium space of a two-storey naturally ventilated building. The building atrium is ventilated by a series of entry vents on one wall of the building in conjunction with roof vents. External wind speeds from 25 to 250% of the mean site wind speed (5.7 m/s) were examined and found to result in an almost linear increase in the ACH rate. For a single wind speed, the relationship between wind direction and the ACH rate was also found to be approximately linear for wind directions between 0° and 90° (orthogonal and parallel) to the wall vent openings, but non-linear for other wind directions (90-135°). More generally, the significant variation in the atrium ACH rate with changes in external wind conditions, evident in this particular building model, illustrates the importance of considering non-design wind conditions when designing NV buildings.
机译:建筑物中自然通风(NV)的设计指南着重于基于建筑物空间参数的潜在每小时换气量(ACH)。至关重要的是,通常基于单个平均风速和相关的主导风向来假设外部气流数据。当出现非设计外部风况时,这可能会导致通风率和舒适度发生重大变化。本文介绍了一项CFD研究,旨在研究外部风速和风向变化对两层自然通风建筑中庭空间的空气变化率的影响。建筑物的中庭通过建筑物一堵墙上的一系列入口通风孔和屋顶通风孔进行通风。检查了外部风速,该风速为平均站点风速(5.7 m / s)的25%至250%,发现导致ACH速率几乎呈线性增加。对于单个风速,还发现风向与ACH速率之间的关系对于与壁通风口的0°至90°(正交和平行)之间的风向大约是线性的,而对于其他风向则是非线性的(90-135°)。更一般而言,在该特定建筑模型中显而易见的是,随着外部风况的变化,中庭ACH速率的显着变化说明了在设计NV建筑物时考虑非设计风况的重要性。

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