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无盖板渗透型集热器热性能的对比试验 被引量:4

Experimental comparison of the thermal performance of unglazed transpired collectors
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摘要 利用太阳能空气加热系统实验台,对黑、深绿和深蓝3种颜色无盖板渗透型集热器的热性能进行了户外瞬态对比试验。试验结果表明:太阳辐射照度和风量是影响系统热性能的重要因素。在高档和低档两种风量下,黑色集热器的瞬时平均热效率分别为76.04%和67.50%,高于普通平板太阳能空气集热器;集热器表面颜色对其热性能有一定影响,在高档和低档两种风量下,深绿色和深蓝色集热器的瞬时平均热效率比黑色集热器低15%~22%,空气温升低3~4℃,但仍然优于普通平板空气集热器。从保持建筑立面美观考虑,无盖板渗透型集热器的集热板可以采用颜色较深的彩色,不会对系统热性能造成较大影响。 The thermal performances of black, dark green and dark blue unglazed transpired solar collectors were tested and compared under real transient outdoor conditions using an experimental solar air heating system. The test results show that solar irradiation and air flow rate are the main influencing factors for the thermal performance of solar air heating system. The average instantaneous thermal efficiency of the black collector under high and low air flow rate is 76.04% and 67.50%, respectively, which are higher than that of conventional glazed flat-plate solar air collectors. Surface color of solar air collectors has effect on its thermal performance. The average instantaneous thermal efficiency of the dark green and dark blue collector under high and low air flow rate is 15% to 22% lower than that of the black collector, temperature rise is 3 -4 ℃ lower than that of the black collector. However, the thermal performances of dark green and dark blue collector are better than that of conventional flat-plate collectors. Thus, the thermal performance penalty will not be very high with the application of colored unglazed transpired collectors on building facade for aesthetic reasons.
出处 《可再生能源》 CAS 北大核心 2012年第6期1-4,共4页 Renewable Energy Resources
基金 国家自然科学基金项目(50878060) 国家科技支撑计划课题(2011BAJ05B04) 中国博士后基金特别资助项目(200910-2)
关键词 无盖板渗透型集热器 太阳能空气加热系统 热性能 试验研究 unglazed transpired collector solar air heating system thermal performance experimental research
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参考文献10

  • 1清华大学建筑节能研究中心.中国建筑节能年度发展研究报告2010[M].北京:中国建筑工业出版社.2010.
  • 2清华大学建筑节能研究中心.中国建筑节能年度发展研究报告2007[M].中国建筑工业出版社,2007.
  • 3葛新石,叶宏.太阳空气加热系统漫谈[J].太阳能,2003(1):13-14. 被引量:7
  • 4HOLLICK J C. World's largest and tallest solar re- cladding [J]. Renewable Energy, 1996 (9): 703-707.
  • 5AUGUSTUS LEON M, KUMAR S. Mathematical model- ing and thermal performance analysis of unglazed tran- spired solar collectors [J]. Solar Energy, 2007,81:62- 75.
  • 6王崇杰,何文晶,薛一冰.我国寒冷地区高校学生公寓生态设计与实践——以山东建筑大学生态学生公寓为例[J].建筑学报,2006(11):29-31. 被引量:12
  • 7GUNNEWIEK L H, BRUNDRETT E, HOLLANDS K GT. Flow distribution in unglazed transpired plate solar air heaters of large area [J]. Solar Energy, 1996,58 : 227- 237.
  • 8GUNNEWIEK L H, HOLLANDS K G T, BRUNDRETF E Effect of wind on flow distribution in unglazed tran- spired-plate collectors [J]. Solar Energy, 2002,72 317-325.
  • 9GAWLIK K,CHRISTENSEN C,KUTSCHER C. A nu- merical and experimental investigation of low-conduc- tivity unglazed, transpired solar air heaters [J]. Journal of Solar Energy Engineering, 2005,127 : 153-155.
  • 10叶宏,葛新石,庄双勇,程晓舫,王军,许勤堂,奚益民.带透明蜂窝的太阳空气加热器的实验研究(Ⅰ)——不同结构空气加热器的性能比较[J].太阳能学报,2003,24(1):27-31. 被引量:15

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