期刊文献+

我国湿热地区自然通风建筑夏季热舒适研究——以广州为例 被引量:65

Thermal comfort in naturally ventilated buildings in hot-humid area of China in summer:an example study of Guangzhou
在线阅读 下载PDF
导出
摘要 2008年夏季对广州某高校学生在自然通风建筑中进行了501人次的热舒适现场调查,调查内容包括热感觉、热舒适度、热可接受度及潮湿感,并对相应的室内干球温度、相对湿度、黑球温度和风速等热环境参数进行了测试记录。通过对数据的整理分析发现,自然通风建筑的夏季室内温湿度均高于ASHRAE标准的舒适区域,但人们对该环境有较好的适应性。调查结果表明,我国湿热地区自然通风建筑的热中性温度为28.1℃(ET*=29.3℃),可接受的热环境温度的上限为29.7℃(ET*=30.9℃),相对湿度上限为78%。 Presents a 501 person-time field survey of thermal comfort in naturally ventilated buildings of an university in Guangzhou in summer 2008, during which the data of human thermal sensation, thermal comfort, thermal acceptability and humidity perception are collected and the indoor thermal parameters including dry-bulb temperature, relative humidity, black globe temperature and air velocity are recorded. The results reveal that although the thermal conditions are out of the ASHRAE comfort zone, people can adapt themselves to the local environment. Obtains the neutral temperature 28.1 ℃ (ET^* = 29.3 ℃ ) and the upper limit of the acceptable temperature 29.7 ℃(ET^*=30.9 ℃ ) and the upper limit of the acceptable relative humidity 78%.
出处 《暖通空调》 北大核心 2010年第2期96-101,共6页 Heating Ventilating & Air Conditioning
基金 国家自然科学基金资助项目(编号:50708038 50838003)
关键词 湿热地区 自然通风建筑 热舒适 热感觉 现场测试 hot-humid area, naturally ventilated building, thermal comfort, thermal sensation, field test
  • 相关文献

参考文献21

  • 1ASHRAE. ASHRAE standard 55-2004 Thermal environmental conditions for human occupancy[S]. Atlanta: ASHRAE, 2004.
  • 2ISO. International standard 7730 Ergonomics of the thermal environments-analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria [S]. Geneva: International Standards Organization, 2005.
  • 3Tao P. The thermal sensation difference between Chinese and American people [C] // The 5th International Conference on Indoor Air Quality and Climate. Ottawa, Canada, 1990:699-704.
  • 4Chan W T. An assessment of thermal comfort in office premises in Hong Kong [G~ ff ASHRAE Trans, 1998, 104(1): 653-658.
  • 5夏一哉,赵荣义,江亿.北京市住宅环境热舒适研究[J].暖通空调,1999,29(2):1-5. 被引量:160
  • 6de Dear R, Brager G. Developing an adaptive model of thermal comfort and preference[G] //ASHRAE Trans, 1998, 104(1): 145-167.
  • 7Fanger P O, Toftum J. Prediction of thermal sensation in non-air-conditioned buildings in warm climates[C] // The 9th International Conference on Indoor Air Quality and Climate. Monterey, California, USA, 2002 : 92- 97.
  • 8Feriadi H, Wong N H, Chandra S,et al. Redefining appropriate thermal comfort standard for naturally ventilated buildings in tropics ( Singapore and Indonesia perspective) [C]//Monterey The Indoor Air, 2002:110 - 115.
  • 9Chun C, Kwok A, Mitamura T, et al. Thermal diary: connecting temperature history to indoor comfort[J]. Building and Environment, 2008, 43 (5): 877 - 885.
  • 10纪秀玲,戴自祝,甘永祥.夏季室内人体热感觉调查[J].中国卫生工程学,2003,2(3):141-143. 被引量:9

二级参考文献27

  • 1吕芳 涂光备 等.天津地区人体热舒适的测试与分析.全国暖通空调制冷2000学术年会论文集[M].南宁:中国建筑学会暖通空调专业委员会和中国制冷学会第五专业委员会,2000.636-639.
  • 2[1]ASHRAE,ANSI/ASHRAE 55-1992,Thermal environmental conditions for human occupancy.Atlanta:American Society of Heating,Refrigerating and Air Conditioning Engineers,Inc.1992.
  • 3[2]ISO,Internatioal Standard 7 730,Moderate thermal environments-determination of the PMV and PPD indices and specification of the conditions for thermal comfort.Geneva:Intemational Standard Organization.1984.
  • 4[3]Gagge A P.A standard predictive index of human response to the thermal environment.ASHRAE Trans,1986,92(2):709 ~ 731.
  • 5[6]Fanger P O,Toftum J.Prediction of thermal sensation in non-air-conditioned building in warm climates.Proceedings:Indoor Air 2002.
  • 6ASHRAE 55-1992. Thermal environmental condi-tions for human occupancy[S].
  • 7ISO 7730. Moderate thermal environments-determina-tion of the PMV and PPD indices and specification of the conditions for thermal comfort[S].
  • 8Hanna R. The relationship between thermal comfort and user satisfaction in hot dry climates[J]. Renewable Energy,1997,10(4):559-568.
  • 9Nicol J F, Humphreys M A. Adaptive thermal comfort and sustainable thermal standards for buildings[J]. Energy and Buildings, 2002,34(6):563-572.
  • 10Shahin H. A comparative analysis of short-term and long-term thermal comfort surveys in Iran[Z]. Moving Thermal Comfort Standards into the 21st Century, Windsor UK,2001.

共引文献262

同被引文献635

引证文献65

二级引证文献303

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部