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首页> 外文期刊>Civil Engineering and Architecture >An Optimum Thermal Insulation Type and Thickness for Residential Buildings in Three Different Climatic Regions of Saudi Arabia
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An Optimum Thermal Insulation Type and Thickness for Residential Buildings in Three Different Climatic Regions of Saudi Arabia

机译:沙特阿拉伯三种不同气候地区的住宅建筑物最佳隔热型和厚度

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摘要

Efficient thermal insulation in the harsh desert climate of Saudi Arabia, where the cooling requirement of buildings is dominant, is very important from the aspect of energy efficiency. Through its eco-friendly properties, thermal insulation is one of the most efficient strategies for reducing energy use while providing the desired thermal comfort. In this study, the impact of thermal insulation type and thickness on reducing the annual energy consumption was evaluated for a sample prototype building located in three Saudi cities. DesignBuilder energy simulation tool has been used for more investigation such as the insulation cost benefits using the life-cycle cost model to knowing when to stop adding insulation. Results showed that applying thermal insulation to the walls and roof leads to a significant reduction in the total costs for all four insulation types. The results show that energy cost savings vary from 5.6 $/m~(2) to 9.7 $/m~(2) depending on the city climatic condition. On the other hand, the highest payback period value with 8.8 years in Khamis Mushait (Moderate climate), while the lowest value reached 4.7 years in Gazan (Hot-humid climate).
机译:高效在沙特阿拉伯的苛刻沙漠气候中的保温性,建筑物的冷却要求是主导的,从能效的方面非常重要。通过其环保性质,保温是降低能源使用的最有效的策略之一,同时提供所需的热舒适度。在这项研究中,为位于沙特城市三个城市的样本原型建筑评估了隔热型和厚度对降低年度能量消耗的影响。 DesignBuilder Energy Simulation工具已被用于更多调查,例如使用生命周期成本模型的绝缘成本优势,以了解何时停止添加绝缘。结果表明,对墙壁和屋顶的热绝缘施加导致所有四种绝缘类型的总成本显着降低。结果表明,取决于城市气候条件,能源成本节省可从5.6 $ / m〜(2)到9.7 $ / m〜(2)各不等。另一方面,在哈拉姆温泉人(中等气候)中,回收期最高的回报率值为8.8岁,而最低价值达到了47岁的加沙(热潮气候)。

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