School of Urban Design, Wuhan University, Wuhan 430070, China.
School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430070, China.
Int J Environ Res Public Health. 2018 Oct 9;15(10):2202. doi: 10.3390/ijerph15102202.
There has been an insufficient study of passive climate adaptability that considers both the summer and winter season for the outdoor thermal environment of hot-summer and cold-winter cities. In this study, we performed a quantitative simulation to research the passive climate adaptability of a residential area, considering piloti as the main method for climate adaptation in a hot-summer and cold-winter city in China. Numerical simulations were performed with a coupled simulation method of convection, radiation, and conduction. A cubic non-linear k⁻ε model proposed by Craft et al. was selected as the turbulence model and three-dimensional multi-reflections of shortwave and longwave radiations were considered in the radiation simulation. Through the simulation, we found that setting the piloti at the two ends of the building was the optimal piloti arrangement for climate adaptation. Then the relationship between the piloti ratio (0%, 20%, 40%, 60%, and 80%) and the outdoor thermal environment was studied. It could be concluded that with the increasing piloti ratio, the wind velocity increased, the mean radiant temperature (MRT) decreased slightly, and the average standard effective temperature (SET*) decreased to 3.6 °C in summer, while in winter, with the increasing piloti ratio, the wind velocity, MRT, and SET* changed slightly. The wind environment significantly affected the SET* value, and the piloti ratio should be between 12% and 38% to avoid wind-induced discomfort.
对于夏热冬冷城市的室外热环境,考虑到夏季和冬季,对被动气候适应性的研究还不够充分。本研究采用自然通风的主导方法——架空通风地板,对中国夏热冬冷城市的居住小区进行了被动气候适应性的定量模拟。采用对流、辐射和传导的耦合模拟方法进行数值模拟。选择 Craft 等人提出的立方非线性 k-ε模型作为湍流模型,并考虑了短波和长波辐射的三维多次反射。通过模拟,发现将架空通风地板设置在建筑物的两端是适应气候的最佳架空通风地板布置方式。然后研究了架空通风地板的比例(0%、20%、40%、60%和 80%)与室外热环境之间的关系。结果表明,随着架空通风地板比例的增加,风速增加,平均辐射温度(MRT)略有下降,夏季平均标准有效温度(SET*)降低到 3.6°C,而在冬季,随着架空通风地板比例的增加,风速、MRT 和 SET变化不大。风环境对 SET值有显著影响,架空通风地板比例应在 12%至 38%之间,以避免因风致不适。