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On the effect of provision of balconies on natural ventilation and thermal comfort in high-rise residential buildings

机译:关于在高层住宅中提供阳台对自然通风和热舒适性的影响

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Natural ventilation and balconies are two of the most desirable features of a living space in subtropical climates. The aim of this paper is to investigate the effect of balconies on natural ventilation performance and thermal comfort of residential buildings. To this end, in-situ full-scale measurements were carried out for Computational Fluid Dynamics (CFD) model validation and further analysis. A number of parameters such as balcony type, balcony depth, ventilation mode, and wind angle were used in developing case studies. Once validated, the CFD model was used for investigation of air movement inside each case study. Combined and separate effects of the defined parameters on natural ventilation performance were evaluated using air velocity and Standard Effective Temperature (SET*) as criteria. The results indicate that the addition of a balcony to a building with single-sided ventilation can improve the ventilation performance. In contrast, indoor air velocity was reduced as a result of balcony addition when the case study was operated in cross ventilation mode. Furthermore, ventilation performance of single-sided ventilation was found to be more sensitive to the change of parameters compared to that of the cross ventilation. It has also been found that among the investigated parameters, incident wind angle affects the ventilation performance most for both natural ventilation modes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:自然通风和阳台是亚热带气候中居住空间的两个最理想的功能。本文的目的是研究阳台对住宅建筑自然通风性能和热舒适性的影响。为此,进行了原位满量程测量,以进行计算流体动力学(CFD)模型验证和进一步分析。在开发案例研究中使用了许多参数,例如阳台类型,阳台深度,通风模式和风角。一旦通过验证,CFD模型将用于调查每个案例研究中的空气流动。使用风速和标准有效温度(SET *)作为标准,评估定义的参数对自然通风性能的组合和单独影响。结果表明,在单侧通风的建筑物中增加阳台可以改善通风性能。相反,当案例研究以交叉通风模式运行时,由于增加了阳台,室内空气速度降低了。此外,发现单侧通风的通风性能与交叉通风相比对参数的变化更为敏感。还发现在所研究的参数中,入射风角对两种自然通风模式对通风性能的影响最大。 (C)2017 Elsevier Ltd.保留所有权利。

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