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Improving Residential Wind Environments by Understanding the Relationship between Building Arrangements and Outdoor Regional Ventilation

机译:通过了解建筑布置与室外区域通风之间的关系来改善住宅的风环境

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This paper explores the method of assessing regional spatial ventilation performance for the design of residential building arrangements at an operational level. Three ventilation efficiency (VE) indices, Net Escape Velocity (NEV), Visitation Frequency (VF) and spatial-mean Velocity Magnitude (VM), are adopted to quantify the influence of design variation on VE within different regional spaces. Computational Fluid Dynamics (CFD) method is applied to calculate VE indices mentioned above. Several residential building arrangement cases are set to discuss the effect of different building length, lateral spacing and layouts on four typical space patterns under wind directions oblique or perpendicular to the main (long) building facade. The simulation results prove that NEV, VF and VM are useful VE indices, which can reflect different features of flow pattern in studied regional domains. Preliminary parametric studies indicate that wind direction might be the most important factor for improving spatial ventilation. When the angle between main building facade and wind direction is more than 30°, ventilation of different exterior spaces could improve evidently. When wind direction is perpendicular to main building fa?ade, decreasing building length can increase NEV of the middle space by 50%, while decreasing lateral spacing would decrease NEV of the intersection space by 35%.
机译:本文探讨了在运营层面评估住宅建筑布置设计的区域空间通风性能的方法。采用三个通风效率(VE)指标,即净逃逸速度(NEV),访问频率(VF)和空间平均速度幅度(VM)来量化设计变化对不同区域空间内VE的影响。应用计算流体动力学(CFD)方法来计算上述VE指数。设置了几个住宅建筑案例,以讨论在倾斜或垂直于主(长)建筑立面的风向下,四种不同的建筑长度,横向间距和布局对四种典型空间格局的影响。仿真结果表明,NEV,VF和VM是有用的VE指标,可以反映研究区域域内流型的不同特征。初步的参数研究表明,风向可能是改善空间通风的最重要因素。当主建筑立面与风向之间的角度大于30°时,不同外部空间的通风效果会明显改善。当风向垂直于主建筑立面时,减小建筑长度可以使中间空间的NEV增大50%,而减小横向间隔会使交叉空间的NEV减小35%。

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