期刊文献+

管簇结构腔体式吸收器热效率所受边界条件的影响 被引量:4

THE INFLUENCE OF ENVIRONMENT CONDITION ON THE HEAT EFFICIENCY OF SOLAR CAVITY RECEIVER WITH ABSORBER OF A BUNDLE OF TUBES
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摘要 分析了槽形抛物镜聚光集热器中管簇结构腔体式吸收器的热物理特征,依据其热阻网络、太阳能一般性控制方程和计算框图对其热效率在自动跟踪条件下所受边界条件(太阳直射辐射强度、室外空气温度、室外风速、工作介质流速)影响作了数值分析。 n this paper, the thermal characteristics of a novel solar cavity receiver using a bundle of tubes as an absorber is analysed. Based on the heat resistance network,the general control equations of solar energy and calculation fram figure, the influence of environment condition (solar straight radiation intensity, outside air temperature,out side wind velocity, actuating medium flowing velocity) on the heat efficiency is numerically analysed.
出处 《太阳能学报》 EI CAS CSCD 北大核心 1996年第1期81-86,共6页 Acta Energiae Solaris Sinica
关键词 管簇结构 腔体式 吸收器 太阳能 热效率 集热器 solar cavity receiver with absorber of a bundle of tubes, solar energy,heat efficiency boundary condition
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参考文献2

  • 1葛新石,太阳能工程.原理和应用,1988年
  • 2Zhang Z M,Solar Energy,1987年,39卷,5期,371页

同被引文献23

  • 1张丽英,翟辉,代彦军,王如竹.聚焦型太阳能集热器中腔体吸收器的热性能研究[J].工程热物理学报,2008,29(9):1453-1457. 被引量:6
  • 2刘志刚,张春平,赵耀华,唐大伟.一种新型腔式吸热器的设计与实验研究[J].太阳能学报,2005,26(3):332-337. 被引量:25
  • 3侴乔力,葛新石,程曙霞,李业发.管簇结构腔体式吸收器热性能的数值分析[J].太阳能学报,1995,16(1):21-28. 被引量:13
  • 4剑乔力,葛新石,程曙霞,李业发.腔体式吸收器与真空管吸收器的热性能比较[J].热能动力工程,1996,11(5):273-277. 被引量:3
  • 5Wang J, Zhang Y M, Liu D Y, et al. Development and study on vacuum absorber tube [ A ]. Proc of 2007 Solar World Congress[ C] , Beijing, 2007, 1813-1817.
  • 6Wang J, Zhang Y M, Liu D Y, et al. Development and study on heat-pipe type vacuum absorber tube[A]. Proc of 2007 Solar World Congress[ C], Beijing, 2007, 1818-1822.
  • 7Boyd D A, Gajewski R, Swift R. A cylindrical blackbody solar energy receiver [ J ]. Solar Energy, 1976, 18 (5) : 395-401.
  • 8Barra O A, Franceschi L. The parabolic trough plants u- sing black body receivers: Experimental and theorectical analyses[ J]. Solar Energy, 1982, 28(2) : 163-171.
  • 9Bakos G C, Ioannidis I, Tsagas N F, et al. Design, op- timisation and conversion-efficiency determination of a line-focus parabolic-trough solar-collector [ J ]. Applied Energy, 2001, 68( 1 ) : 43-50.
  • 10Arasu A V, Sornakumar T. Design, manufacture and tes- ting of fiberglass reinforced parabola trough for parabolictrough solar collectors [J]. Solar Energy, 2007, 81 (10) : 1273-1279.

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