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红外透射率对建筑玻璃遮阳系数和空调能耗的影响 被引量:1

Effect of Inferred Transmittance on the Shading Coefficient of Building Glass and Energy Consumption of Air-conditioning System
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摘要 减小建筑玻璃对红外的透射率是减小玻璃遮阳系数从而降低空调能耗的有效途径。以广州地区一个简化的办公建筑模型为例,分别取玻璃对可见光透射率为0.5、0.6、0.7,利用DeST-c模拟计算了减小玻璃红外透射率对玻璃遮阳系数和空调能耗的影响。研究结果表明减小红外透射率可以在保证室内自然采光的同时显著降低建筑的空调能耗,节能潜力很大。 Reducing the inferred transmittance is an efficient way to reduce the shading coefficient of the building glass and energy consumption of the air-conditioning system.Based on a simplified office building model in Guangzhou,the DeST-c code was used to study the effect of the inferred transmittance on the shading coefficient of the building glass and the energy consumption of the air-conditioning system for different visible transmittances(viz.,0.5、0.6、0.7).The results show that the energy consumption of air-conditioning system could be significantly decreased while the indoor natural lighting could not be degraded by reducing the inferred transmittance of the building glass.
出处 《建筑热能通风空调》 2011年第3期27-29,26,共4页 Building Energy & Environment
基金 国家自然科学基金(50906014) 住房与城乡建设部科技计划(2010-K1-24)
关键词 遮阳系数 空调能耗 红外透射率 可见光透射率 shading coefficient energy consumption of air-conditioning system infrared transmittance visible transmittance
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  • 1闫成文,姚健,周燕,林云,张文宏.夏热冬冷地区外墙构造对住宅能耗的影响[J].新型建筑材料,2006,33(12):55-57. 被引量:9
  • 2闫成文,姚健,周燕,张文宏.夏热冬冷地区窗墙比对建筑能耗的影响[J].门窗,2007(5):1-3. 被引量:13
  • 3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2009[R].北京:中国建筑工业出版社,2009.
  • 4Kistler S S. Coherent expanded aerogels and jellies [J]. Nature, 1931 (127):741.
  • 5Peri J B.Infrared study of OH and NH2 groups on the surface of a dry silica aerogel [J].The Journal of Physical Chemistry,1966,70 (9): 2937-2945.
  • 6Tewari P H, Hunt A J, Loftlus K D.Ambient-temperature supercritical drying of tansparent silica aerogels [J]. Materials Letters, 1985, 3(9-10): 363-367.
  • 7Wu H J, Fan J, Du N.Thermal energy transport within porous polymer materials:Effects of fiber characteristics [J].Journal of Applied Polymer Science, 2007,106(1 ):576-583.
  • 8Wu H J, Fan J, Du N. Porous materials with thin interlayers for optimal thermal insulation [J].International Journal of Nonlinear Sciences and Numerical Simulation,2009,10(3):291-300.
  • 9Wu H J, Fan J T, Qin X H, et al. Fabrication and characterization of a novel polypropylene/poly (vinyl alcohol)/aluminum hybrid layered assembly for high-performance fibrous insulation[J].Journal of Applied Polymer Science, 2008,110(4):2525-2530.
  • 10Hwang S W, Jung H H, Hyun S H, et al. Effective preparation of crack-free silica aerogels via ambient drying[J]. Journal of Sol-Gel Science and Technology,2007(41): 139-146.

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  • 1龙恩深,王勇,肖益民,付祥钊.遮阳系数对供暖与空调能耗影响差异的逐时解析[J].暖通空调,2005,35(6):46-51. 被引量:15
  • 2卜增文,毛洪伟,杨红.Low-e玻璃对空调负荷及建筑能耗的影响[J].暖通空调,2005,35(8):119-121. 被引量:27
  • 3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2012[R]{H}北京:中国建筑工业出版社,2012.
  • 4Jensen K I,Schultz J M,Kristiansen F H. Development of windows based on highly insulating aerogel glazings[J].{H}JOURNAL OF NON-CRYSTALLINE SOLIDS,2004.351-357.
  • 5Schuhz J M,Jensen K I,Kristtansen F H. Super insulating aerogel glazing[J].{H}Solar Energy Materials and Solar Cells,2005.275-285.
  • 6LONG E S. General descriptions of research method,buildings,analysis object,assumptions and weather conditions of background cities[J].{H}Building and Environment,2005,(4):443-450.
  • 7Lam J C,Wan K K W,Tsang C L,Yang L. Building energy efficiency in different climates[J].{H}Energy Conversion & Management,2008.2354-2366.
  • 8Baetens R,Jelle B P,Gustavsen A. Aerogel insulation for building applications:A state-of-the-art review[J].{H}Energy and Buildings,2011.761-769.
  • 9姚健,闫成文,叶晶晶,周燕.外窗遮阳系数对建筑能耗的影响[J].建筑节能,2008,36(2):65-67. 被引量:18
  • 10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

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