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Evaluation of enhanced conduction-corrected modified effective temperature ETFe as the outdoor thermal environment evaluation index
Authors:Yoshihito Kurazumi  Tadahiro Tsuchikawa  Naoki Matsubara  Emi Kondo  Tetsumi Horikoshi
Affiliation:a School of Life Studies, Sugiyama Jogakuen University, 17-3 Hoshigaoka-motomachi, Chikusa-ku, Nagoya, Aichi 464-8662, Japan
b School of Human Science & Environment, University of Hyogo, 1-1-12 Hon-cho, Shinzaike, Himeji, Hyogo 670-0092, Japan
c Division of Environmental Sciences, Graduate School of Kyoto Prefectural University, Nakaragi-cho, Shimogamo, Sakyo-ku, Kyoto 608522, Japan
d Graduate School Nagoya Institute of Technology, Gokiso-cyo, Showa-ku, Nagoya, Aichi 468555, Japan
e Department of Techno-Business Administration, Graduate School of Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya, Aichi 468555, Japan
Abstract:The purpose of this paper is made to clarify that the relationship between the human physiological and psychological responses and the enhanced conduction-corrected modified effective temperature ETFe as the outdoor thermal environment evaluation index upon the human body. Environmental factors and human physiological and psychological responses were measured. It was made clear that the variables by which summer outdoor environmental factors influence the thermal sensation vote are heat conduction, humidity and short-wave solar radiation. The variables that affect the thermal comfort vote are air velocity, heat conduction and humidity. ETFe, into which the environmental factors that are the variables for human response are incorporated, showed good correspondence with the thermal sensation vote. Similarly, ETFe has a good correspondence with thermal comfort vote. The usage of ETFe as a thermal environment evaluation index for summer outdoor spaces is valid. The threshold for the human body with regards to thermal environment stimuli in an outdoor space is higher than the thermal environment stimuli in a summer indoor space.
Keywords:Outdoor environment  Sensational and physiological temperature index  Human response  Solar radiation  Heat conduction  Enhanced conduction-corrected modified effective temperature
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