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Reducing cooling demands in a hot dry climate: A simulation study for non-insulated passive cool roof thermal performance in residential buildings

机译:减少炎热干燥气候中的制冷需求:住宅建筑中非隔热被动式凉屋顶热性能的模拟研究

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摘要

In hot dry climates, it is estimated that almost half the urban peak load of energy consumption is used to satisfy air-conditioning cooling demands in summer time. Since the urbanization rate in developing countries – like the case in Egypt – is rising rapidly, the pressure placed on energy resources to satisfy inhabitants’ indoor comfort requirements is consequently increasing too. This paper introduces passive cool roof as a means of reducing energy cooling loads for satisfying human comfort requirements in a hot climate. A designed algorithmic hybrid matrix was used to simulate 37 roof design probabilities alternating roof shape, roof material and construction. The result of using a vault roof with high albedo coating shows a fall of 53% in discomfort hours and saves 826 kW h during the summer season compared to the base case of the conventional non insulated flat roof in a typical Cairo residential buildings. It is recommended that the selected cool roof solution be combined with natural ventilation to increase the indoor thermal comfort, and with passive heating strategies to compensate the increase in heating hours. The application is intended for low cost residential buildings in a hot dry climate.
机译:据估计,在炎热干燥的气候中,几乎一半的城市能耗峰值负荷用于满足夏季的空调制冷需求。由于发展中国家的城市化速度(例如埃及)正在迅速上升,因此满足居民室内舒适度要求的能源压力也随之增加。本文介绍了被动式凉爽屋顶,作为减少能量冷却负荷的一种方法,可以满足炎热气候下的人体舒适性要求。设计的算法混合矩阵用于模拟37个屋顶形状,屋顶材料和构造交替变化的屋顶设计概率。与典型的开罗住宅建筑中的常规非绝缘平屋顶基础案例相比,使用具有高反照率涂层的拱形屋顶的结果表明,在夏季的不舒适时间减少了53%,并节省了826 kWh。建议将选定的凉爽屋顶解决方案与自然通风相结合,以增加室内热舒适度,并与被动供暖策略相结合,以补偿供暖时间的增加。该应用程序旨在用于炎热干燥气候中的低成本住宅建筑。

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