能源消耗
建筑围护结构
环境科学
消费(社会学)
温室气体
可持续发展
建筑工程
包络线(雷达)
零能耗建筑
高效能源利用
建筑设计
可持续设计
城市化
环境经济学
土木工程
持续性
计算机科学
工程类
热的
气象学
电信
社会科学
法学
经济增长
生态学
社会学
生物
政治学
雷达
物理
电气工程
经济
作者
Jue Liu,Bao Li,Biyun Ye,Junqi Wang
标识
DOI:10.1177/1420326x231158020
摘要
With the advance of urbanization, energy consumption of public buildings is increasing rapidly, and it is urgent to achieve sustainable development of buildings. For public buildings, its energy-efficient envelope design is of great importance and necessity, which has been widely adopted to reduce energy consumption and CO 2 emissions without sacrificing indoor thermal comfort. In this study, a progressive design approach of building envelope is proposed for energy-saving and low carbon emission. Then, the proposed method was applied in an archive building in Nanjing, China, with multiple rounds of design modifications of building envelopes through numerical simulations of building performance. The indoor temperature fluctuation, building energy consumption and CO 2 emission were evaluated. Compared to the initial design, the optimized design can save 20.00%, 25.66% and 20.97% of building energy consumption in summer, winter and the entire year, respectively. Furthermore, the optimized design can reduce 20% and 25% of carbon emission in summer and winter, respectively. The progressive design method for building envelopes can significantly save energy consumption and reduce carbon emissions. In addition, it provides a reference for future green building design and application, which promotes the sustainable development of green and low-carbon buildings.
科研通智能强力驱动
Strongly Powered by AbleSci AI