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Contamination Of Fresh Air Intakes Due To Downwash From A Rooftop Structure

机译:屋顶结构的向下冲洗会污染新鲜空气

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The effect of rooftop structures on the dispersion of building exhaust was evaluated using wind tunnel experiments with an isolated building for four different full-scale equivalent heights varying from 15 to 70 m. The stack was located on the roof of the building downwind of the rooftop structure. In some cases, downwash produced by the rooftop structure caused a significant reduction in dilution (i.e., increased contaminant concentration) compared with results obtained with a flat-roofed model. For the wind normal to the building, the effect of the rooftop structure depended on building height and the crosswind width of the structure. Maximum reduction in dilution occurred for the 15-m building with a wide penthouse. The influence of the rooftop structure on plume behavior for the normal wind diminished as building height increased because of an increase in size of the separated flow region above the roof. On the other hand, for an oblique wind at 45°, the rooftop structure produced low dilution for all building heights. The paper shows that the American Society of Heating, Refrigerating and Air-Condition-ing Engineers geometric stack design method and dilution model can lead to an unconservative design.
机译:使用风洞实验评估了屋顶结构对建筑物尾气扩散的影响,该实验是在15到70 m范围内的四个不同的满量程等效高度下,使用隔离的建筑物进行的。烟囱位于屋顶结构顺风建筑物的屋顶上。在某些情况下,与采用平屋顶模型获得的结果相比,屋顶结构产生的向下冲洗导致稀释率显着降低(即,污染物浓度增加)。对于垂直于建筑物的风,屋顶结构的效果取决于建筑物的高度和结构的侧风宽度。对于15米长的顶层公寓,其稀释作用最大程度地降低了。随着建筑物高度的增加,屋顶结构对正常风的羽流行为的影响减小,这是因为屋顶上方分离的流动区域的尺寸增加了。另一方面,对于45度的倾斜风,屋顶结构在所有建筑物高度上的稀释率均较低。本文表明,美国供热,制冷和空调工程师协会的几何堆栈设计方法和稀释模型可能导致不保守的设计。

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