期刊文献+

不同运行状态下光伏窗的太阳得热系数对比研究

A Comparative Study on the Solar Heat Gain Coefficient of Photovoltaic Windows Under Different Operating Conditions
原文传递
导出
摘要 该文提出了1种半透明光伏窗太阳得热系数(Solar heat gain coefficient,SHGC)的简易室外测试方法。首先通过室外实验研究了不同运行状态下半透明光伏窗的SHGC,实验结果表明,光伏窗开路(Open circuit,OC)状态下的SHGC显著高于最大功率点(Maximum power point,MPP)状态下的SHGC,两者的SHGC差异最高可达11.5%;其次,通过理论分析研究了电池覆盖率对不同运行状态下光伏窗SHGC的影响,同时探究了不同类型光伏窗在上述2种运行状态下的SHGC差异。该文的分析结果将为更准确地评价光伏窗的热工性能和空调负荷计算提供指导,并推动光伏建筑一体化技术发展。 A simple outdoor experiment for the solar heat gain coefficient(SHGC)of semitransparent photovoltaic(STPV)windows was proposed in this paper.First,the SHGC of STPV windows under different operating conditions were investigated using outdoor experiments.It was found that the SHGC of STPV windows operating at open-circuit(OC)conditions is significantly higher than that at the maximum power point,and the maximum difference in SHGC between the two can reach up to 11.5%.Then,the influence of solar cells coverage ratio on the SHGC of STPV windows,and the difference of SHGC of various types of STPV windows under the two operating conditions was studied through theoretical analysis.
作者 周浩 彭晋卿 王蒙 张福家 吴奔 ZHOU Hao;PENG Jinqing;WANG Meng;ZHANG Fujia;WU Ben(College of Civil Engineering,Hunan University,Changsha 410082,Hunan,China;School of Energy and Power Engineering,Changsha University of Science and Technology,Changsha 410114,Hunan,China;Hunan Red Solar New Energy Science And Technology Co.Ltd.,Changsha 410200,Hunan,China;Advanced SolTech Renewable Energy(Hangzhou)Co.,Ltd.,Hangzhou 310018,Zhejiang,China)
出处 《建筑科学》 CSCD 北大核心 2023年第2期105-113,170,共10页 Building Science
基金 国家自然科学基金面上项目“真空复合型半透明光伏窗光电热耦合作用机理及光热性能调控研究”(51978252) 湖南创新型省份建设专项经费资助-高新技术引领项目“高效节能真空型光伏幕墙关键技术研发与示范应用”(2020GK2076) 湖南省教育厅一般项目“半透明碲化镉光伏窗对建筑节能的影响研究”(19C0066)。
关键词 半透明光伏窗 太阳得热系数(SHGC) 室外测试实验 不同运行状态 电池覆盖率 semitransparent photovoltaic(STPV)windows solar heat gain coefficient(SHGC) outdoor experiment different operating conditions solar cells coverage ratio
  • 相关文献

参考文献3

二级参考文献21

  • 1齐芳燕.浅谈城市居住建筑外窗的节能措施[J].山西建筑,2007,33(9):227-228. 被引量:5
  • 2Remi C, Andreas K, Athienitis. Optimization of the performance of double-facades with integrated photovoltaic panels and motorized blinds [J].Solar Energy, 2006, 80 : 482- 491.
  • 3Gem1 Y Y, Mike M, Koen S. Design and overall energy performance of a ventilated photovoltaic facade [J]. Solar Energy, 2007, 81: 383-394.
  • 4Etzion Y, Erell E. Controlling the transmission of radiant energy through windows: a novel ventilated reversible glazing system[J]. Building and Environment, 2000, 35: 433- 444.
  • 5Miyazaki T, Akisawa A, Kashiwagi T. Energy savings of office buildings by the use of semi-transparent solar cells for windows[ J]. Renewable Energy, 2005, 30: 281-304.
  • 6Chow T T, Fong K F, He W, et al. Performance evaluation of a PV ventilated window applying to oflqce building of Hang Kong[J]. Energy and Buildings, 2007, 39: 643-650.
  • 7Chow T T, Lin Z, He W, et al. Use of ventilated solar screen window in warm climate [ J]. Applied Thermal Engineering, 2006, 26: 1910-1918.
  • 8杨仕超.夏热冬暖地区门窗幕墙节能对策[J].城市住宅,2008,15(11):94-95. 被引量:9
  • 9裴刚,周天泰,季杰,何伟,何苗苗.两种新型太阳能通风窗在香港地区的实验研究[J].太阳能学报,2009,30(3):282-286. 被引量:9
  • 10裴刚,季杰,蒋爱国,周天泰,何伟.光伏双层窗的综合性能研究[J].太阳能学报,2009,30(4):441-444. 被引量:22

共引文献19

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