期刊文献+

基于热环境舒适的湿热地区高密度城市教育空间设计研究——以深圳新洲小学为例 被引量:3

RESEARCH ON THE DESIGN OF EDUCATIONAL SPACE IN HIGH-DENSITY URBAN ENVIRONMENT IN HOT-HUMID AREAS BASED ON THERMAL COMFORT:A CASE STUDY OF XINZHOU PRIMARY SCHOOL,SHENZHEN
下载PDF
导出
摘要 本文以深圳市新洲小学为例,探讨以热舒适为核心的空间设计策略,应对高密度城市环境,构建利于通风降温的形体策略与气候空间系统。结合前期风热环境模拟与建成后的实测数据,验证其热舒适调节的有效性。在构造层面,对课室通风降噪表皮系统进行风热耦合模拟,优化课室内热环境舒适性。综上,研究基于热环境优化,整合了空间设计、计算模拟与现场实测等方法,为湿热地区高密度城市的教育建筑性能提升探索了适宜的技术路径。 Taking Shenzhen Xinzhou Primary School as an example,this paper discusses the space design strategy with thermal comfort as the core to respond to the high-density urban environment,and construct a physical strategy and climate space system that is conducive to ventilation and cooling.Combining the simulation of the wind and heat environment in the early stage and the measured data after the completion,the effectiveness of its thermal comfort adjustment is verified.At the structural level,the air-heat coupling simulation of the classroom ventilation and noise reduction skin system is carried out to optimize the comfort of the thermal environment in the classroom.In summary,based on the optimization of the thermal environment,the research integrates methods such as space design,calculation simulation and field measurement,and explores a suitable technical path for the improvement of the performance of educational buildings in high-density cities in hot and humid areas.
作者 肖毅强 林健成 林瀚坤 Xiao Yiqiang;Lin Jiancheng;Lin Hankun
出处 《当代建筑》 2021年第9期44-47,共4页 Contemporary Architecture
基金 国家自然科学基金面上项目(编号:52078214)。
关键词 绿色教育建筑 气候空间 湿热气候 热舒适 高密度城市 green educational building climate space hot-humid climate thermal comfort high-density urban environment
  • 相关文献

参考文献9

二级参考文献45

  • 1纪秀玲,王保国,刘淑艳,戴自祝.江浙地区非空调环境热舒适研究[J].北京理工大学学报,2004,24(12):1100-1103. 被引量:39
  • 2罗明智,李百战,郑洁.人体热适应性与热舒适[J].制冷与空调(四川),2005,19(1):75-78. 被引量:22
  • 3江燕涛,杨昌智,李文菁,王海.非空调环境下性别与热舒适的关系[J].暖通空调,2006,36(5):17-21. 被引量:17
  • 4Brager G S, de Dear R. Thermal adaptation in the built environment: a literature review[J]. Energy and Buildings, 1998, 27(1): 83-96.
  • 5ASHRAE. ASHRAE standard 55-2004 Thermal environmental conditions for human occupancy[S]. Atlanta: ASHRAE, 2004.
  • 6ISO. 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.
  • 7Tao 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.
  • 8Chan W T. An assessment of thermal comfort in office premises in Hong Kong [G~ ff ASHRAE Trans, 1998, 104(1): 653-658.
  • 9de Dear R, Brager G. Developing an adaptive model of thermal comfort and preference[G] //ASHRAE Trans, 1998, 104(1): 145-167.
  • 10Fanger 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.

共引文献152

同被引文献43

引证文献3

二级引证文献1

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