期刊文献+

湖北省首个超低能耗公共建筑设计探索——以中铁·龙盘湖·世纪山水二期工程(5-2区)79号楼为例 被引量:2

Exploration on the Design of the First Ultra-Low Energy Consumption Public Building in Hubei Province: Analysis of No.79 building of China Railway · Longpan Lake · Shijishan Phase II Project (zone 5-2)
在线阅读 下载PDF
导出
摘要 随着超低能耗建筑在全国范围内推广应用,各省相继出台了一系列相关政策,以推动超低能耗建筑事业发展,并对其新技术、新方法进行探索。基于国家标准GB/T51350—2019《近零能耗建筑技术标准》,充分考虑湖北省典型夏热冬冷地区气候特点,结合实际工程案例,采取优化整体方案布局、优化墙体材料及保温层、节点深化设计、整体气密性设计、能耗模拟软件优化分析等设计技术措施,充分考虑了保温材料耐久性、防水性、防潮性。初步探索了适用于湖北省地区的超低能耗公共建筑设计技术措施,并设置了能耗监测系统与室内外空气品质监测系统,实现建筑运行能耗和空气品质的实时监测、收集与展示,为今后推动湖北地区超低能耗建筑技术发展提供切实可行的实际工程经验和科学数据支撑。 With the popularization and application of ultra-low energy consumption buildings in the whole country, a series of relevant policies have been issued in each province to promote the development of ultra-low energy consumption buildings, and explore new technologies and methods. Based on the national standard “Technical Standard for Near Zero Energy Buildings”(GB/T 51350—2019), taking into full consideration the climate characteristics of typical hot summer and cold winter areas in Hubei Province, combined with the actual project case, technical measures of optimizing the overall layout, optimizing the wall materials and insulation layer, deepening the design of nodes, overall air tightness design are utilized, as well as the energy consumption simulation software optimization analysis, etc. In addition, the durability, waterproof and moisture resistance of thermal insulation materials are fully considered. It preliminarily explores the design technical measures of ultra-low energy consumption public buildings suitable for Hubei Province, and sets up energy consumption monitoring system and indoor and outdoor air quality monitoring system to realize real-time monitoring, collection and display of building operation energy consumption and air quality, so as to provide practical engineering experience and scientific data for promoting the development of ultra-low energy consumption building technology in Hubei Province in the future.
作者 胡习博 黄倞 胡军 HU Xi-bo;HUANG Liang;HU Jun(Hubei Academy of Building Research and Design Co.,Ltd.,Wuhan 430071,China;Yichang Hongming Real Estate Co.,Ltd.,Yichang 443000,Hubei,China)
出处 《建筑节能(中英文)》 CAS 2022年第2期140-144,共5页 Building Energy Efficiency
关键词 超低能耗建筑 节点优化设计 建筑节能 示范项目 ultra-low energy consumption building node optimization design building energy saving demonstration project
  • 相关文献

参考文献11

二级参考文献48

  • 1杨维菊,徐尧,吴薇.办公建筑的生态节能设计[J].建筑节能,2006(6):27-31. 被引量:21
  • 2王浩,侯素兰,董亮.环境温、湿度对绝热保温材料导热系数影响的实验研究[J].工业计量,2012,22(S2):41-43. 被引量:7
  • 3龙恩深,王勇,肖益民,付祥钊.遮阳系数对供暖与空调能耗影响差异的逐时解析[J].暖通空调,2005,35(6):46-51. 被引量:15
  • 4杨秀,江亿.中外建筑能耗比较[J].中国能源,2007,29(6):21-26. 被引量:26
  • 5Esbensen T V, Korsgaard V. Dimensioning of the solar heating system in the zero energy house in Denmark [ J]. Solar Energy, 1977, 19(2): 195-199.
  • 6Voss K, Goetzberger A, Bopp G, et al. The self-sufficient solar house in Freiburg'-Results of 3 years of operation [ J ]. Solar Energy, 1996, 58(1) : 17-23.
  • 7Adamson B. Passive Climatization of Residential Houses in People's Republic of China[ J]. Lund University, Report BKL, 1988, 2:12-19.
  • 8Stahl W, Voss K, Goetzberger A. The self-sufficient solar house in Freiburg[ J]. Solar Energy, 1994, 52 ( 1 ) : 111-125.
  • 9Minergie website. [EB/OL]. [2013-6-1]. www. minergie, ch.
  • 10Font L L, Baixeras C, Domingo C, et al. Experimental and theoretical study of radon levels and entry mechanisms in a Mediterranean climate house [ J ]. Radiation Measurements, 1999, 31(1): 277-282.

共引文献207

同被引文献14

引证文献2

二级引证文献2

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