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Impact of external shading strategy on energy performance of multi-story hotel building in hot-humid climate

机译:湿热气候下外遮阳策略对多层酒店建筑能耗的影响

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Passive design strategies are the most feasible and economic ways of energy and thermal management in buildings, if appropriately incorporated at the conceptual design stage. Though many works have been reported on the application of external shading options, a shading strategy that incorporates the features of both external shading devices and self-shading envelope, is yet to be explored. The present study was focused on the energy saving potential and economics of incorporating external shading devices with self-shading envelope for a multi-story hotel building in hot-humid climate of Saudi Arabia. The modeling and the energy simulations were performed by DesignBuilder (Version 4.5.0.148). According to the base-design geometry of the building, appropriate shading options were proposed for the north, south, north-east, north-west, south-east and south-west facades. External walls and roof were insulated with fiber glass and windows were double-glazed (DG), in compliance with the Saudi Building Code - 601. The shading strategy was chosen in such a way that it forms part of a self-shading envelope while improving energy performance and contributing additional space at very affordable cost. The results show that the proposed shading could save the annual energy consumption of the building by 20.5% compared to the base case. The payback period for the additional investment required for incorporating the passive shading strategy is estimated to be 2 years. Study of another option by improving the baseline insulation and glazing (with polyurethane in walls and roof and triple low-e glazed shows, without shading) shows that it saves only 5% of annual energy consumption, and the payback period is unacceptably long (84 years). (C) 2018 Elsevier Ltd. All rights reserved.
机译:如果在概念设计阶段适当地采用被动式设计策略,则它们是建筑物中能源和热管理的最可行,最经济的方法。尽管已经报道了许多有关外部遮蔽选项应用的工作,但是仍需要探索一种兼具外部遮蔽设备和自遮蔽包络特征的遮蔽策略。本研究的重点是在沙特阿拉伯炎热潮湿的气候中,将多层遮阳设备与自遮阳外壳结合起来用于多层旅馆建筑的节能潜力和经济性。建模和能量模拟由DesignBuilder(版本4.5.0.148)执行。根据建筑物的基础设计几何形状,为北,南,东北,西北,东南和西南外立面提出了适当的遮光选项。外墙和屋顶用玻璃纤维绝缘,窗户采用双层玻璃(DG),符合《沙特建筑法规-601》。选择遮阳策略时应使其成为自遮蔽结构的一部分,同时改进能源性能,并以非常实惠的成本贡献出更多空间。结果表明,与基本情况相比,所建议的遮阳可以使建筑物的年能耗降低20.5%。合并被动阴影策略所需的额外投资的投资回收期估计为2年。通过改善基线隔热和玻璃化(在墙壁和屋顶采用聚氨酯,三重低辐射玻璃,无阴影)的另一种方案的研究表明,该方案仅节省了5%的年度能源消耗,投资回收期长得令人无法接受(84年份)。 (C)2018 Elsevier Ltd.保留所有权利。

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