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Investigation of the effect of balconies on natural ventilation of dwellings in high-rise residential buildings in subtropical climate

机译:亚热带气候中阳台对高层住宅建筑自然通风的影响

摘要

Balconies, as one of the main architectural features in subtropical climates, are assumed to enhance the ventilation performance of buildings by redirecting the wind. Although there are some studies on the effect of balconies on natural ventilation inside buildings, the majority have been conducted on single zone buildings with simple geometries. The purpose of this study is to explore the effect of balconies on the internal air flow pattern and ventilation performance of multi-storey residential buildings with internal partitions. To this end, a sample residential unit was selected for investigation and three different conditions tested, base case (no balcony), an open balcony and a semi-enclosed balcony. Computational Fluid Dynamics is used as an analysis method due to its accuracy and ability to provide detailed results. The cases are analysed in terms of average velocity, flow uniformity and number of Air Changes per Hour (ACH). The results suggest the introduction of a semi-enclosed balcony into high-rise dwellings improves the average velocity and flow uniformity. Integrating an open balcony results in reduction of the aforementioned parameters at 0° wind incidence.
机译:阳台是亚热带气候的主要建筑特征之一,被认为可以通过改变风向来增强建筑物的通风性能。尽管对阳台对建筑物内部自然通风的影响进行了一些研究,但大多数研究是在具有简单几何形状的单区域建筑物上进行的。这项研究的目的是探讨阳台对带有内部隔板的多层住宅建筑物内部空气流动模式和通风性能的影响。为此,选择了一个样本住宅单元进行调查,并测试了三种不同条件,即基本情况(无阳台),开放式阳台和半封闭式阳台。计算流体动力学由于其准确性和提供详细结果的能力而被用作分析方法。根据平均速度,流量均匀性和每小时换气次数(ACH)分析案例。结果表明,将半封闭阳台引入高层住宅可改善平均速度和流量均匀性。集成开放式阳台会导致在0°风入射时降低上述参数。

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