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冷辐射不均匀环境中人体热响应的心理学实验 被引量:10

Psychological study on thermal responses in asymmetrical cold radiation environment
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摘要 为了研究严寒地区外窗和外墙冷辐射对人体热舒适的影响,本文对身着冬季服装的大学生受试者进行了有冷辐射的稍凉工况、中性工况和无冷辐射的均匀工况的人体热响应心理学实验研究.在测试环境参数和生理学参数的同时,对受试者局部和整体热感觉以及热舒适进行问卷调查.结果表明:在有冷辐射的稍凉工况和中性工况中,头部和背部的热感觉无显著性差异,手部、小腿、手臂的热感觉和整体热感觉均有显著性差异;有冷辐射的中性工况的整体热感觉低于无冷辐射的均匀工况的,尽管前者室内平均温度高.当人体距外墙和外窗较近时,外墙和外窗冷辐射导致头脚温差增大,会加剧人体腿部的冷感觉,进而影响整体热感觉和热舒适.在冷辐射不均匀环境中,整体热感觉接近于人体较冷部位的热感觉,整体热舒适接近于人体最不舒适部位,即遵循"抱怨"模式.在均匀环境和冷辐射不均匀环境中,整体热感觉与整体热舒适皆线性相关.应提高人体下部如腿部的空气温度,以提高腿部的热感觉,从而提高整体热感觉和热舒适. The thermal response psychology experiments were conducted for college students wearing winter clothes in three experimental conditions,overall slightly cool,overall neutral asymmetrical cold radiation and overall neutral uniform.The environmental and physiological parameters were recorded.Meanwhile,the subjects were asked to fill in the questionnaires on five local and overall thermal sensation and thermal comfort.The results show that,in the slightly cool and neutral asymmetrical cold radiation conditions,the head and back thermal sensation have no significant difference;while the hand,arm,lower leg and overall thermal sensation are different.In the neutral non-uniform condition,overall thermal sensation votes were lower than those in the uniform condition,although the mean indoor temperature of the former condition was higher.The temperature difference between head and foot increased for the subjects near the exterior window and wall because of cold radiation,which led to the people felt cold at their legs and the overall thermal sensation and comfort decreased.In the slightly cool and neutral conditions with cold radiation,overall thermal sensation followed the thermal sensation for cooler parts,and overall thermal comfort followed the most uncomfortable parts,following the "complaint" modes.In the uniform condition and asymmetrical cold radiation environments,overall thermal sensation votes and thermal comfort votes have good linear correlation.The air temperature for the lower body such as lower legs should be increased,which led to leg local thermal sensation improved,and overall thermal sensation and thermal comfort would be improved.
出处 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2013年第6期59-64,共6页 Journal of Harbin Institute of Technology
基金 国家自然科学基金(51278142) 黑龙江省自然科学基金(E201039) 教育部留学回国人员科研启动基金
关键词 心理响应 热感觉 热舒适 冷辐射不均匀环境 实验研究 psychological response thermal sensation thermal comfort asymmetrical cold radiation environment chamber study
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参考文献18

  • 1王昭俊,李爱雪,何亚男,杨威.哈尔滨地区人体热舒适与热适应现场研究[J].哈尔滨工业大学学报,2012,44(8):48-52. 被引量:25
  • 2WANG Zhaojun,HE Yanan,HOU Juan. The effect of cold radiation on human thermal sensation and thermal comfort in Harbin winter[A].Boulder:University of Colorado at Boulder,2012.398-405.
  • 3SCHLEGEL J C,MCNALL P E. The effect of asymmetric radiation on the thermal and comfort sensations of sedentary subjects[J].ASHRAE Transactions,1968,(02):144-153.
  • 4OLESEN B W. Thermal comfort requirements for floors occupied by people with bare feet[J].ASHRAE Transactions,1977,(02):41-57.
  • 5FANGER P O,BANHIDI L,OLESEN B W. Comfort limits for heated ceiling[J].ASHRAE Transactions,1980,(02):141-156.
  • 6SAKOI T,TSUZUKI K,KATO S. Thermal comfort,skin temperature distribution,and sensible heat loss distribution in the sitting poture in various asymmetric radiant fields[J].Building and Environment,2007,(12):3984-3999.doi:10.1016/j.buildenv.2006.10.050.
  • 7MCNALL P E,BIDDISON R E. Thermal and comfort sensations of sedentary persons exposed to asymmetric radiant fields[J].ASHRAE Transactions,1970,(01):123-136.
  • 8张宇峰,赵荣义.局部热暴露对人体全身热反应的影响[J].暖通空调,2005,35(2):25-30. 被引量:11
  • 9ZHANG H. Human thermal sensation and comfort in transient and non-uniform thermal environments[D].Berkeley:University of California at Berkeley,2003.
  • 10SCHELLEN L,LOOMANS M G L C,De WIT M H. The influence of local effects on thermal sensation under non-uniform environmental conditions-Gender differences in thermophysiology,thermal comfort and productivity during convective and radiant cooling[J].Physiology and Behavior,2012.252-261.

二级参考文献41

  • 1张宇峰,赵荣义.局部热暴露对人体全身热反应的影响[J].暖通空调,2005,35(2):25-30. 被引量:11
  • 2赵荣义,许为全.改善室内空气环境的调节策略[J].暖通空调,1997,27(1):1-4. 被引量:16
  • 3欧阳骅.国外水冷服装装备的发展概况[J].军队卫生,1981,(3):75-85.
  • 4ASHRAE. ASHRAE Handbook of Fundamentals,2001.
  • 5Fanger P O. Thermal Comfort. Copenhagen: Danish Technical Press, 1970.
  • 6Melikov A K, Arakelian R S, Halkjaer L, et al. Spot cooling part 1: human responses to cooling with air jets. In: ASHRAETrans. 1994, 100(2). 476-499.
  • 7Zhang H. Human thermal sensation and comfort in transient and non-uniform thermal environments: [Ph D Thesis]. Berkeley: University of California at Berkeley, 2003.
  • 8Hagino M, Hara J. Development of a method for predicting comfortable airflow in the passenger compartment. In: SAE Technical Paper Series. No922131. 1992.
  • 9Ingersoll J G, Kalman T G, Thomas G, et al.Automobile passenger compartment thermal comfort model part Ⅱ: human thermal comfort calculation.In: SAE Technical Paper Series. No 920266. 1992.
  • 10Gagge A P, Stolwijk J A J, Nishi Y. An effective temperature scale based on a single model of human physiological temperature response. In: ASHRAE Trans. 1971, 77(1). 247-262.

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