住宅建筑外热质量对能耗的影响

Amir H. Ghoreishi
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引用次数: 3

摘要

众所周知,外部热质量(eTM)可以提高建筑能量和热舒适性能。尽管eTM具有已知的好处,但迄今为止的研究还没有通过考虑广泛的影响因素和各种气候条件来彻底解决eTM对建筑环境性能的影响。本文通过对eTM对住宅建筑能源性能的影响进行全面而详细的分析,解决了知识体系中的这一差距。通过定量研究和模拟分析,本研究发现了能源减少的各种趋势,在少数情况下,能源增加的趋势取决于项目的位置。事实上,对于几个位置的20厘米厚的壁的情况,冷却能量显示出高达4%的增加。为了获得更好的能源和设计荷载方案,本研究还确定了最佳eTM深度,以帮助建筑师和工程师就建筑围护结构做出明智的设计决策,这对本文研究的气候相似的发展中国家尤为重要,因为在这些国家,砌体材料的使用非常普遍。至于未来的步骤,建议进一步探索在几种气候下观察到的冷却能量增加现象。此外,还可以考虑将eTM与基于特定气候位置的规范要求的隔热材料相结合,并评估其综合性能。
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The Effects of Exterior Thermal Mass (eTM) on Energy Consumption in Residential Buildings
Exterior Thermal Mass (eTM) is known to improve building energy and thermal comfort performance. Despite its known benefits, studies to date have not thoroughly addressed the effects of eTM on building environmental performance by considering a wide range of influential factors and various climatic conditions. This paper addresses such a gap in the body of knowledge by conducting a comprehensive and detailed analysis of eTM impacts on residential buildings’ energy performance. Using quantitative research and simulation analyses, this study has found various trends of energy reductions and, in a few cases, energy increases depending upon the location of projects. In fact, the cooling energies are shown to increase of up to 4% for the scenario of 20 cm thickness wall in several locations. Aiming for better energy and design load scenarios, this research has also established the optimal eTM depth to help architects and engineers make informed design decisions with regard to building envelopes, which is particularly important for developing countries with similar climates studied in this paper, where the use of masonry materials is widely common. As for future steps, further exploration of cooling energy increase phenomenon, which was observed for several climates is recommended. Also, coupling eTM with code-required thermal insulation based upon specific climatic locations and evaluate their integrated performance can be considered.
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