会议论文详细信息
2018 International Conference on Material Strength and Applied Mechanics
Experimental study on performance of outdoor ground materials in aspect of surface temperature by constant field experiment in subtropical climate city
材料科学;力学
Xi, T.Y.^1,3 ; Ding, J.H.^2 ; Lv, X.W.^1 ; Lei, Y.S.^1
Architecture School of Harbin, Institute of Technology, Harbin City
150006, China^1
School of Architecture and Urban Planning, Shenzhen University, Shenzhen
518060, China^2
HeiLongjiang Cold Region Architectural Science Key Laboratory, Harbin
150000, China^3
关键词: Ground surface temperature;    Highest temperature;    Materials performance;    Specific capacities;    Subtropical climates;    Surface temperatures;    Temperature decrease;    Thermal environment;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/372/1/012028/pdf
DOI  :  10.1088/1757-899X/372/1/012028
来源: IOP
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【 摘 要 】

In order to create a comfortable building thermal environment, it is important to study the outdoor ground materials performance. In this article, we carried out a constant field experiment in Guangzhou, China, studying on the variations of the surface temperature of three common outdoor building materials: concrete, pavement and grass. We put the equipment on six experiment points respectively to measure the ground surface temperature constantly. The result shows that because of the specific heat capacity, both concrete and pavement have an obvious time delay during their temperature decrease when the grass ground has almost no time delay. And when in the same conditions (exposed to sunlight all day), the material with a low specific heat capacity has a more sensitive variation in temperature. The lower the specific capacity is, the steeper the variation trend of the surface temperature will be. So compared with concrete, the pavement brick ground with a low specific heat capacity has a higher surface temperature in daytime and a lower temperature in the late night time. When in different conditions (different time exposed to sunlight), the temperature value is proportional to the time exposed to the sunlight between the same materials. The concrete exposed to sunlight all day has the highest temperature when the shaded one has the lowest. This experiment reveals that both specific heat capacity and the exposed time to sunlight has a strong influence on the surface temperature of outdoor materials. In subtropical region, the materials with a higher specific heat capacity and a less time exposed to sunlight may be more beneficial to the building thermal environment.

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