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Study on the Optimum Roof Type with 30° Roof Angle to Enhance Natural Ventilation and Air Circulation of a Passive Design

机译:具有30°顶角的最佳屋顶类型的研究,以增强自然通风和被动设计的空气流通

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One of the major problems in modern housing design is overheating. Occupants suffer higher indoor temperatures due to a lack of natural ventilation. This issue arises because of poor passive design. A good passive design promotes natural ventilation and provides better indoor air temperatures without reliance on mechanical cooling systems. The roofing system plays an important role in a house’s design. Since the roof contributes to 70% of the total heat gain, it is important to investigate its design to reduce the impact of overheating. It has been found that many roofs lack a ventilation system in the top part of the house. These openings in the roof provide areas for trapped hot air to exit into the environment. The openings also enhance natural ventilation and allow for effective air circulation inside the house. The optimum roof is designed to tackle this matter by reducing the overheating inside the house, especially during the hottest hours of the day. The hot air exits based on the differences in air density and due to prevailing wind. In this study, the optimum roof was tested on a small-scale model and verified by simulation using computational fluid dynamic (CFD) software, namely ANSYS 18.0. From the data obtained, it was proven that the opening in the roof reduced the indoor temperature. In conclusion, the optimum roof could improve the passive design and help to reduce overheating inside a house.
机译:现代房屋设计的主要问题之一是过热。由于缺乏自然通风,居住者的室内温度更高。由于不良的被动式设计而导致出现此问题。良好的被动设计可促进自然通风,并提供更好的室内空气温度,而无需依赖机械冷却系统。屋面系统在房屋设计中起着重要作用。由于屋顶贡献了总热量的70%,因此研究其设计以减少过热的影响非常重要。已经发现,许多屋顶在房屋的顶部缺少通风系统。屋顶上的这些开口为滞留的热空气提供了进入环境的区域。开口还增强了自然通风并允许房屋内有效的空气流通。最佳屋顶旨在通过减少房屋内部的过热来解决此问题,尤其是在一天中最热的时段。根据空气密度的差异以及盛行的风,热空气会排出。在这项研究中,最佳屋顶在小规模模型上进行了测试,并使用计算流体力学(CFD)软件ANSYS 18.0通过仿真进行了验证。根据获得的数据,可以证明屋顶的开口降低了室内温度。总之,最佳的屋顶可以改善被动式设计,并有助于减少房屋内部的过热。

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