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Improving energy efficiency of existing residential buildings using effective thermal retrofit of building envelope

机译:通过有效地对建筑围护结构进行热改造,提高现有住宅建筑的能源效率

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Upgrading the energy efficiency of existing buildings is a well-known issue around the globe. Given the very low renewal rate of the building stock, thermal retrofit of the existing buildings seems to be a good solution to improve the environmental performance of the building sector. Several studies have acknowledged the lack of knowledge, experience and best-practice examples as barriers in thermal retrofit of existing buildings. Therefore, this study has focused on developing recommendations on the most effective and feasible retrofitting techniques for existing buildings and performing financial analysis of initial investment vs. return based on the quantitative results of the energy modelling. Thermal comfort modelling software FirstRate5 has been used to simulate the annual heating and cooling energy consumption of nine benchmark buildings through a range of retrofitting techniques. Dwellings of varying construction materials including weatherboard, cavity brick and brick veneer have been simulated to improve accuracy. Examining seven different thermal retrofitting options in this study, it has become apparent that there is significant heating and cooling energy reduction, with payback period of less than three years, by implementing two options of the examined retrofitting cases to existing residential dwellings.
机译:提升现有建筑的能源效率是全球众所周知的问题。鉴于建筑存量的更新率非常低,对现有建筑物进行热力翻新似乎是改善建筑部门环境绩效的良好解决方案。几项研究已经承认,缺乏知识,经验和最佳实践示例会阻碍现有建筑物的热更新。因此,本研究的重点是针对现有建筑物的最有效和可行的改造技术提出建议,并根据能源建模的定量结果对初始投资与收益进行财务分析。热舒适建模软件FirstRate5已通过一系列改造技术用于模拟九座基准建筑的年度供暖和制冷能耗。模拟了各种建筑材料的住宅,包括挡风板,空心砖和单板砖,以提高准确性。通过研究这项研究中的七种不同的热能改造方案,很明显的是,通过对现有住宅实施两种经过研究的改造案例,可以显着减少供暖和制冷能耗,回收期不到三年。

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