首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >CFD simulation of the effect of an upstream building on the inter-unit dispersion in a multi-story building in two wind directions
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CFD simulation of the effect of an upstream building on the inter-unit dispersion in a multi-story building in two wind directions

机译:CFD模拟上游建筑物对多层建筑物在两个风向中单元间扩散的影响

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Previous studies on inter-unit dispersion are limited to isolated buildings. The influence of an upstream interfering building may significantly modify the indoor airflow characteristics of the wind-induced natural ventilated downstream interfered building. Motivated by the findings in previous studies, namely that infectious respiratory aerosols exhausted from a unit can re-enter into another unit in the same building through building envelope openings, this study investigates the inter-unit pollutant dispersion around a multi-story building in two wind directions by employing the computational fluid dynamics (CFD) method. The CFD model employed in this study has been validated against previous experimental data. The results show that the presence of an upstream building greatly changes the path lines around the downstream target building and the pollutant transportation routes around it. The presence of a low upstream building also greatly increases the average air exchange rate (ACH) values and the pollutant re-entry ratios (R-k) below the source unit on the windward side of the downstream target building for normal wind incidence. However, the presence of a high upstream building greatly increases the average ACH values on the windward side and increases the Rk on the leeward side of the downstream building for oblique wind incidence. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前关于单元间分散的研究仅限于隔离的建筑物。上游干扰建筑物的影响可能会显着改变风诱发的自然通风的下游干扰建筑物的室内气流特性。根据先前研究的发现,即从一个单元排出的传染性呼吸气溶胶可以通过建筑物围护结构的开口重新进入同一建筑物中的另一个单元,这项研究调查了两个建筑物中多层建筑物之间的单元间污染物扩散情况。通过使用计算流体动力学(CFD)方法来确定风向。本研究中使用的CFD模型已针对先前的实验数据进行了验证。结果表明,上游建筑物的存在极大地改变了下游目标建筑物周围的路径线及其周围的污染物运输路线。上游低建筑物的存在也大大增加了平均空气交换率(ACH)值和污染物进入空气的比率(R-k),在正常目标风向的下游目标建筑物的迎风侧的源单元以下。但是,上游高建筑物的存在大大增加了迎风侧的平均ACH值,并增加了下游建筑物斜向风的背风侧的Rk。 (C)2016 Elsevier Ltd.保留所有权利。

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