Ventilation performance analysis on low-rise courtyard building for various courtyard shape factors and roof topology

IF 1.1 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY International Journal of Ventilation Pub Date : 2022-02-06 DOI:10.1080/14733315.2022.2036477
D. Prakash
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Abstract

Abstract Residential buildings in the street canyon are highly suffering from reduced natural ventilation since the surrounding buildings completely mask the window and door openings. For such buildings, ventilation through the roof is an excellent method, and the buildings with courtyard space are believed to provide good ventilation and comfort. However, proper designing of courtyard buildings is highly essential, and for that, a complete airflow study in and around the courtyard building is required. Hence, in this research work, a low-rise residential courtyard building is considered, and the influence of courtyard space shape factor and roof topology on the ventilation performance of courtyard buildings is studied. The airflow study is made with the aid of the computational fluid dynamics (CFD) technique. Grid sensitivity analysis, validation of CFD results with wind tunnel experiments, and repeatability error analysis on wind tunnel test rig are also conducted to ensure the reliability of CFD simulation results. From this analysis, the courtyard with a wider space entraps more air from the atmosphere, and the building with low height offers uniform airflow in the courtyard space. Roof topology significantly influences the airflow around the building. Among the analyzed roof shape, pitched roof shape seems to perform relatively better and enhance the indoor air velocity by 42% with reference to the building without courtyard space. Also, the thermal comfort index for the building with courtyard space is 1.16 whereas for a building without a courtyard is 2.42 on a 3 scale. The percentage dissatisfaction index (PPD) is 52.9% lesser in the building with courtyard space.
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考虑不同院落形状因素和屋顶拓扑的低层院落建筑通风性能分析
由于周围的建筑完全遮蔽了窗户和门的开口,街道峡谷中的住宅建筑受到自然通风减少的严重影响。对于这类建筑,通过屋顶通风是一种很好的方法,有庭院空间的建筑被认为可以提供良好的通风和舒适。然而,院落建筑的合理设计是非常必要的,为此,需要对院落建筑内部和周围进行完整的气流研究。因此,本研究以一低层住宅院落建筑为研究对象,研究院落空间形状因子和屋顶拓扑对院落建筑通风性能的影响。利用计算流体力学(CFD)技术对气流进行了研究。为保证CFD仿真结果的可靠性,还进行了网格灵敏度分析、风洞实验验证CFD结果、风洞试验台可重复性误差分析。由此分析,空间较宽的庭院从大气中吸收了更多的空气,而低高度的建筑在庭院空间中提供了均匀的气流。屋顶拓扑结构显著影响建筑周围的气流。在分析的屋顶形状中,相对于没有庭院空间的建筑,坡屋顶形状表现相对较好,提高了42%的室内空气流速。此外,有庭院空间的建筑的热舒适指数为1.16,而没有庭院的建筑的热舒适指数为2.42。有院落空间的建筑的百分比不满指数(PPD)低52.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Ventilation
International Journal of Ventilation CONSTRUCTION & BUILDING TECHNOLOGY-ENERGY & FUELS
CiteScore
3.50
自引率
6.70%
发文量
7
审稿时长
>12 weeks
期刊介绍: This is a peer reviewed journal aimed at providing the latest information on research and application. Topics include: • New ideas concerned with the development or application of ventilation; • Validated case studies demonstrating the performance of ventilation strategies; • Information on needs and solutions for specific building types including: offices, dwellings, schools, hospitals, parking garages, urban buildings and recreational buildings etc; • Developments in numerical methods; • Measurement techniques; • Related issues in which the impact of ventilation plays an important role (e.g. the interaction of ventilation with air quality, health and comfort); • Energy issues related to ventilation (e.g. low energy systems, ventilation heating and cooling loss); • Driving forces (weather data, fan performance etc).
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