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Energy retrofit technology for modern and contemporary educational historical buildings considering preservation and utilization aspects

投资回收期 暖通空调 高效能源利用 节能 可再生能源 热舒适性 建筑工程 能源消耗 环境经济学 工程类 计算机科学 土木工程 空调 生产(经济) 机械工程 电气工程 物理 宏观经济学 经济 热力学
作者
Haedeun Park,Jinyoung Park,Sumin Kim,Seong Jin Chang
出处
期刊:Energy Reports [Elsevier BV]
卷期号:11: 3995-4007 被引量:16
标识
DOI:10.1016/j.egyr.2024.03.057
摘要

Energy retrofit technology is proposed for achieving continuous and efficient energy utilization in modern educational facilities. To improve the accuracy of diagnosis rather than improving numerical analysis, the building performance evaluation of exterior walls and windows was conducted using on-site measuring equipment. The target building had a substandard domestic performance; therefore, improvement measures were required to use building energy efficiently. We evaluated the energy consumption of the target building through the building energy analysis program DesignBuilder. Energy efficiency and economic benefits of retrofit technologies were evaluated, with seven selected technologies categorized into passive, active, and renewable. Efficient technologies included PV panel, High-efficiency HVAC system, Airtight film, and LED lights. 8 retrofit packages were formulated, considering energy savings, economic viability, and thermal comfort improvements. Among these, the energy-saving package, the package incorporating all technologies, the economically beneficial package, and the conservation package were efficient for energy savings, while the conservation package, the economic benefits, and the passive were economically efficient. energy-saving package was found effective for warm improvement and demonstrated significant improvement in cold thermal comfort conditions. Considering the modern nature of the target building, a comprehensive conservation package was deemed most suitable, offering energy savings, economic benefits, thermal comfort enhancements, and preservation aspects. With a payback period of 4 years and achieving a 41.4% energy saving, it was deemed the optimal choice for the target building.
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