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DOI10.1016/j.enbuild.2024.113918
On the cooling energy impacts of combined urban heat mitigation strategies in subtropical urban building environment
发表日期2024
ISSN0378-7788
EISSN1872-6178
起始页码309
卷号309
英文摘要Regional climate change leads to more extreme urban heat in desert cities. This affects the building's performance negatively through an increase in cooling energy consumption. To our knowledge, this is the first study investigating the impacts of implementing combined urban heat mitigation strategies of cool materials and increased vegetation on the cooling load demands of 40-various types of buildings in Dubai downtown. Four urban heat mitigation scenarios have been conducted in combination with a base case scenario to examine the effectiveness of the combined strategies in reducing the cooling load demand by using the climatic data from weather research and forecasting model coupled with single layer urban canopy model (WRF/SLUCM) in CitySim. Results revealed that for non-insulated buildings there was an estimated 17.2% to 36.4% reduction in cooling energy demand whereas insulated buildings have an average reduction in energy demand ranging between 15.5% and 29.1%. This reduction in cooling energy consumption is higher when compared with other mitigation techniques like additional urban vegetation and modified cool materials.
英文关键词Combined strategies; CitySim; Cool materials; Increased urban vegetation; WRF/SLUCM; Cooling energy; Urban heat mitigation; Dubai
语种英语
WOS研究方向Construction & Building Technology ; Energy & Fuels ; Engineering
WOS类目Construction & Building Technology ; Energy & Fuels ; Engineering, Civil
WOS记录号WOS:001226768700001
来源期刊ENERGY AND BUILDINGS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/287644
作者单位University of New South Wales Sydney; University of Calcutta
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GB/T 7714
. On the cooling energy impacts of combined urban heat mitigation strategies in subtropical urban building environment[J],2024,309.
APA (2024).On the cooling energy impacts of combined urban heat mitigation strategies in subtropical urban building environment.ENERGY AND BUILDINGS,309.
MLA "On the cooling energy impacts of combined urban heat mitigation strategies in subtropical urban building environment".ENERGY AND BUILDINGS 309(2024).
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