Heat mitigation technologies can improve sustainability in cities. An holistic experimental and numerical impact assessment of urban overheating and related heat mitigation strategies on energy consumption, indoor comfort, vulnerability and heat-related mortality and morbidity in cities

被引:81
作者
Santamouris, M. [1 ]
Paolini, R. [1 ]
Haddad, S. [1 ]
Synnefa, A. [1 ]
Garshasbi, S. [1 ]
Hatvani-Kovacs, G. [1 ]
Gobakis, K. [1 ]
Yenneti, K. [1 ]
Vasilakopoulou, K. [1 ]
Feng, J. [1 ]
Gao, K. [1 ]
Papangelis, G. [2 ]
Dandou, A. [2 ]
Methymaki, G. [2 ]
Portalakis, P. [2 ]
Tombrou, M. [2 ]
机构
[1] Univ New South Wales, Fac Built Environm, High Performance Architecture, Sydney, NSW, Australia
[2] Univ Athens, Phys Dept, Athens, Greece
关键词
CLIMATE-CHANGE; RESIDENTIAL BUILDINGS; EXTREME HEAT; ISLAND; TEMPERATURE; PERFORMANCE; SYSTEM; ALBEDO; WAVES; CITY;
D O I
10.1016/j.enbuild.2020.110002
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Urban overheating affects the energy, health, power, survivability and environmental quality of cities. We calculated the magnitude of overheating in Sydney, Australia, at close to 9 degrees C, which causes a cooling penalty of up to 16% and an increase in the indoor overheating levels of up to 56%. We developed and evaluated eight heat mitigation scenarios based on the use of reflective surfaces, additional greenery, an increase in the evapotranspiration rate and several combinations of these factors. We estimated that mitigation can decrease the peak ambient temperature by up to 2.9 degrees C, reduce the maximum annual cooling consumption by up to 1.5 TWh, decrease the CO2 emissions by as much as 1.21 MT CO2, reduce indoor overheating by up to 80%, decrease the heat-related morbidity by 1.07-1.49, and decrease the heat-related mortality anomaly by as much as 1.39 per 100,000 citizens. We estimated the associated water penalty range to be between 80 and 100 Gl/year or between 13 and 16.7% of the water consumption in Sydney. (C) 2020 Elsevier B.V. All rights reserved.
引用
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页数:15
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