期刊文献+

地板送风空调系统静压箱热衰减特性 被引量:2

Thermal decay in supply air plenum of underfloor air distribution system
下载PDF
导出
摘要 为研究地板送风空调系统中地板静压箱的热衰减特性,首先提出静压箱的热衰减系数的概念,该系数可以用来反映整个房间的得热量中传入静压箱的比例,而该部分传热量正是造成静压箱内产生热衰减的直接原因.然后,通过实验得出地板静压箱内的温度分布特性,并结合盒形图分析影响静压箱热衰减特性的主要因素.最后,得出送风温度、送风量和送风末端形式等因素对静压箱热衰减特性的影响规律.研究结果表明:地板静压箱内的热衰减随着送风温度的升高或者送风量的降低而降低.另外,与采用旋流散流器的地板送风空调系统相比,系统采用多孔板或格栅板作为送风末端时,静压箱的热衰减现象将明显减弱,但静压箱的热衰减系数的变化规律却基本相同. The coefficient of thermal decay is proposed to study the principle of the thermal decay in the underfloor supply air plenum (USAP) of the underfloor air distribution (UFAD) system. The ratio of the heat transfer from the room to the USAP can be derived from the coefficient of thermal decay, and the thermal decay in the USAP is mainly caused by the heat transfer from the room to the USAP. The distribution of the temperatures in the USAP is analyzed by the experiments, and the main influence factors are discussed with the box-plots. Then the effects of the supply air tempera- ture, airflows, and type of diffusers on the thermal decay in the USAP are concluded. The results show that the thermal decay in the USAP is reduced with the increase of the supply air temperature and the decrease of the airflows. In addition, the thermal decay in the UFAD system with perforated tiles or grille diffusers is lower than that in the UFAD system with swift diffusers, but the changes of coefficient of thermal decay are similar for the systems.
出处 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第4期720-727,共8页 Journal of Southeast University:Natural Science Edition
基金 "十二五"国家科技支撑计划资助项目(2011BAJ03B05)
关键词 地板送风 空调系统 地板静压箱 热衰减 underfloor air distribution air-conditioning underfloor supply air plenum thermaldecay
  • 相关文献

参考文献18

  • 1Bauman F, Dally A. Underfloor air distribution ( UFAD ) design guide [ M]. Atlanta, GA, USA: American Society of Heating, Refrigerating and Air- Conditioning Engineers, Inc. , 2003 : 1 -41.
  • 2Zhang K, Zhang X S, Li S H, et al. Review of under- floor air distribution technology [J]. Energy and Build- ings, 2014, 85: 180-186.
  • 3连志伟,马仁民.下送风空调原理与设计[M].上海:上海交通大学出版社,2006:1-5.
  • 4Zhang K, Zhang X S, Li S H, et al. Experimental study on the characteristics of supply air for UFAD system with perforated tiles [J]. Energy and Buildings, 2014, 80:1 - 6.
  • 5牛建磊,沈翀,高乃平,董昆.静压箱对地板送风气流组织与温度分层的影响[J].同济大学学报(自然科学版),2014,42(3):454-459. 被引量:3
  • 6Jin H, Bauman F, Webster T. Testing and modeling of underfloor air supply plenums [J] ASHRAE Transac- tions, 2006, 112:581-591.
  • 7孔琼香,俞炳丰,潘振,杨青.地板送风室内温度不均匀分布特性的实验研究[J].西安交通大学学报,2006,40(9):1074-1078. 被引量:11
  • 8Lee K H, Schiavon S, Bauman F, et al. Thermal decay in underfloor air distribution (UFAD) systems: funda- mentals and influence on system performance [J]. Ap- plied Energy, 2012, 91( 1 ) : 197 - 207.
  • 9Xue G, Lee K, Jiang Z, et al. Thermal environment in indoor spaces with under-floor air distribution systems: Part 2. Determination of design parameters (1522-RP) [J]. HVAC &R Research, 2012, 18(6) : 1192 -1201.
  • 10Lin Z, Chow T T, Fong K F, et al. Comparison of performances of displacement and mixing ventilations. Part I : thermal comfort [J]. International Journal of Refrigeration, 2005, 28 ( 2 ) : 276 - 287.

二级参考文献14

  • 1孔琼香,俞炳丰,潘振.地板送风静压层内气流的数值模拟与送风特性实验[J].西安交通大学学报,2005,39(5):531-535. 被引量:8
  • 2Bauman F,Webster T.Outlook for underfloor air distribution[J].ASHRAE Journal,2001,43 (6):18-27.
  • 3Fukao K,Ichihara M,Oguro M.Comparison of underfloor vs.overhead air distribution systems in an office building[J].ASHRAE Transactions,2002,108 (1):64-71.
  • 4Webster T,Bauman F,Reese J.Underfloor air distribution:thermal stratification[J].ASHRAE Journal,2002,44 (5):28-26.
  • 5Loudermilk K.Temperature control and zoning in Underfloor air distribution systems[J].ASHRAE Transactions,2003,109 (1):307-314.
  • 6Chao C Y H,Wan M P.Airflow and air temperature distribution in the occupied region of an underfloor ventilation system[J].Building and Environment,2004,39(7):749-762.
  • 7BAUMAN F, WEBSTER T. Outlook for underfloor air distribution [J]. ASHRAE Journal, 2001, 43 (6): 18-27.
  • 8LOUDERMILK K. Underfloor air distribution solutions for open office applications [J]. ASHRAE Transactions, 1999, 105 (1) : 605-613.
  • 9MATSUNAWA K, LIZUKA H, TANABE S. Development and application of an underfloor air-conditioning system with improved outlets for a "smart" building in Tokyo[J]. ASHRAE Transactions, 1995, 101 (2): 887-901.
  • 10BAUMAN F, PECORA P, WEBSTER T. How low can you go? Airflow performance of low-height underfloor plenums [EB/OL]. [2007-05-20]. http://repositories. cellib. org/cedr/cbe/havc/Bauman 1999_ Plenums.

共引文献13

同被引文献19

  • 1林章,周天泰,曾志宽.层式通风——高温空调下的出路[J].化工学报,2008,59(S2):235-241. 被引量:19
  • 2林坤平,张寅平,狄洪发,丁剑红,杨睿,徐煦.地板下送风式相变蓄热电采暖系统[J].太阳能学报,2005,26(6):820-824. 被引量:16
  • 3陈晓春,朱颖心,王元.零方程模型用于空调通风房间气流组织数值模拟的研究[J].暖通空调,2006,36(8):19-24. 被引量:43
  • 4Zhang K, Zhang X S,Li S H,et al. Review of under-floor air distribution technology[ J]. Energy and Build-ings, 2014,85: 180-186.
  • 5Bash C E,Patel C D, Sharma R K. Dynamic thermalmanagement of air cooled data center[ C]//77ie Thermaland Thermomechanical Phenomena in Electronics Sys-tems. San Diego, CA,USA, 2006: 440-452.
  • 6Fakhim B,Behnia M,Armfield S W,et al. Cooling solu-tions in an operational data centre: A case study[ J]. Ap-plied Thermal Engineering, 2011, 31(14) : 2279-2291.
  • 7Fulpagare Y, Mahamuni G, Bhargav A. Effect of plenumchamber obstructions on data center performance[J]. Ap-plied Thermal Engineering, 2015,80: 187 - 195.
  • 8Zhang K,Zhang X S,Li S H,et al. Experimental par-ametric study on the temperature distribution of an un-derfloor air distribution (UFAD) system with grille dif-fusers [J ]. Indoor and Built Environment, 2016. (toapear).
  • 9Arghode V K,Kumar P,Joshi Y, et al. Rack levelmodeling of air flow through perforated tile in a datacenter[ J]. Journal of Electronic Packaging, 2013, 135(3): 1059-1069.
  • 10Iyengar M, Schmidt R R,Hamann H, et al. Compari-son between numerical and experimental temperaturedistributions in a small data center test cell[C]//ASME2007 InterPACK Conference Collocated with the ASME/JSME 2007 Thermal Engineering Heat Transfer SummerConference. Vancouver, Canada, 2007 : 819 -826.

引证文献2

二级引证文献21

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