投资回收期
碳足迹
温室气体
环境经济学
被动式太阳能建筑设计
高效能源利用
资本成本
能源消耗
被动房
生命周期评估
建筑工程
环境科学
工程类
生产(经济)
经济
太阳能
生态学
生物
电气工程
宏观经济学
作者
Y. Elaouzy,A. El Fadar
标识
DOI:10.1016/j.rser.2022.112828
摘要
Passive design has recently received increasing attention as an option to reduce energy consumption, abate carbon footprint and alleviate energy bills of buildings by taking advantage of local climatic conditions and building features. However, investigating the performance of passive techniques from one of the energy, economic and environmental (3E) perspectives is insufficient, as several factors from each aspect have a critical influence on the effectiveness of these techniques. This paper provides an in-depth review on the 3E potential of passive design strategies and recommends suitable ones, individually or in combination, depending on building features and climatic conditions. The effectiveness of these methods is evaluated based on key indicators in the 3E points of view, such as energy saving, payback period and greenhouse gas emissions mitigation. The results revealed that most passive strategies have proven to be effective in reducing the energy demand and carbon footprint of buildings when they are well designed. Economically, not all strategies are cost-effective, as strategies such as phase change materials, shading, green roofs and green walls have exhibited longer payback periods. Furthermore, the combination of several passive techniques has yielded significant outcomes in the 3E perspective, resulting in energy savings of 6.7–66.2% and life cycle cost reductions of 12–52%, with payback periods of 0.5–84 years. The higher payback periods of some passive strategies are mainly due to the high capital costs required to implement them. Thus, exploring all features affecting the 3E benefits of passive approaches is crucial to improving their efficiency.
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