期刊文献+

多孔太阳墙式太阳能房间与普通房间热舒适性分析 被引量:2

Porous solar wall room and a common room wall solar thermal comfort analysis
下载PDF
导出
摘要 通过对某多孔太阳墙式太阳能房间和普通房间的数值模拟,分析太阳墙板内空气的受热过程及流动情况,同时系统地比较两种建筑在工作区范围内的热舒适性。与普通采暖房间相比,在有多孔太阳墙送风的情况下,可将室外空气由-3℃加热到21℃,空气流动速度由0.1m/s提高到0.31m/s,提供44.6m3/h的新风量,一定程度上解决了冬季开窗换气所引起的室内热负荷及采暖负荷,论证了多孔太阳墙可使室内热舒适性明显增强的结论。 Through to a porous Solar wall room and the numerical simulation of the common room,analyzes the sun of heated air in the wallboard process flow and,at the same time,the system compared two buildings in the working area within the scope of the thermal comfort.Compared with ordinary heating room,in a porous solar wall under the condition of the air supply and,to some extent,solve the winter window caused by indoor air cooling load and heating load and find out the new volume,indoor thermal comfort conclusion obvious enhancement.
机构地区 内蒙古科技大学
出处 《节能》 2012年第2期55-58,3,共4页 Energy Conservation
关键词 多孔太阳墙 太阳能 热舒适性 建筑 porous solar wall solar room thermal comfort
  • 相关文献

参考文献2

二级参考文献3

共引文献25

同被引文献22

  • 1Fang X, Li Y. Numerical simulation and sensitivity analysis of lattice passive solar heating walls[J]. Solar Energy, 2000, 69(1): 55 - 66.
  • 2Abraham Y. A Knowledge based CAAD system for passive solar architecture[J]. Renewable Energy, 2009, 34:769 - 779.
  • 3Saadatian O, Sopian K, Lira C H, et al. Trombe walls: A review of opportunities and challenges in research and development[J]. Renewable and Sustainable Energy Reviews, 2012, 16:6340 - 6351.
  • 4Zhang Y, Zhang Y P, Wang X, et al. Ideal thermal conductivity of a passive building wall: Determination method and understanding[J]. Applied Energy, 2013, 112:967 - 974.
  • 5Torcellini P, Pless S. Trombe walls in low-energy buildings: practical experiences[A]. Proceeding of World Renewable Energy CongressVlll[C], Colorado, 2004.
  • 6Akbari H, Borgers T R. Free convective laminar-flow within the Trombe wall channel[J]. Solar Energy, 1979, 22(2): 165 - 174.
  • 7Gan G H. A parametric study of Trombe walls for passive cooling of buildings[J]. Energy and Buildings, 1998, 27(1): 37 - 43.
  • 8Bansal N K, Mathur J, Mather S, et al. Modeling of window- sized solar chimneys for ventilation[J]. Build Environment, 2005, 40(10): 1302 - 1308.
  • 9沈娇,李德英.集热蓄热墙式太阳房的室内环境模拟分析[A].中国建筑学会建筑热能动力分会第十六届学术交流大会[C],南昌,2009.
  • 10Afonso C, Olivera A. Solar chimneys: simt, lation and experiment[J]. Energy and Buildings, 2000, 32:71 79.

引证文献2

二级引证文献3

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