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Design of low-energy building and energy consumption analyses 被引量:1

Design of low-energy building and energy consumption analyses
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摘要 In China,a new "Design standard for energy efficiency of residential buildings (for cold region)" was introduced in 2006. In this new standard,more high level insulation of the building envelope is required,yearly energy requirement for heating must be less than 55 kWh/(m2·a)(regarded as a low-energy house). The new attempt was carried out in the process of architecture design with an evaluation on energy consumption of the building. The design plan was brought forward and compared. PHPP software from German was applied to calculate energy consumption of the passive residential building. The optimum design planning was discussed and model of passive house suited to China's national conditions were attempted. The compactness,solar air collector and the window-wall ratio have essential influence on the energy consumption of buildings. The annual heat demands for the buildings with the window-wall ratio 0.35 and 0.50 are 48 kWh/(m2·a) and 46 kWh/(m2·a),respectively. The yearly auxiliary heat of building with the wall-mounted solar air collectors and the window-wall ratio 0.35 is just 4.8 kWh/(m2·a). In China,a new 'Design standard for energy efficiency of residential buildings (for cold region)' was introduced in 2006. In this new standard,more high level insulation of the building envelope is required,yearly energy requirement for heating must be less than 55 kWh/(m2·a)(regarded as a low-energy house). The new attempt was carried out in the process of architecture design with an evaluation on energy consumption of the building. The design plan was brought forward and compared. PHPP software from German was applied to calculate energy consumption of the passive residential building. The optimum design planning was discussed and model of passive house suited to China's national conditions were attempted. The compactness,solar air collector and the window-wall ratio have essential influence on the energy consumption of buildings. The annual heat demands for the buildings with the window-wall ratio 0.35 and 0.50 are 48 kWh/(m2·a) and 46 kWh/(m2·a),respectively. The yearly auxiliary heat of building with the wall-mounted solar air collectors and the window-wall ratio 0.35 is just 4.8 kWh/(m2·a).
出处 《Journal of Central South University》 SCIE EI CAS 2009年第S1期239-243,共5页 中南大学学报(英文版)
基金 Project(50778032) supported by the National Natural Science Foundation of China Project(2006BAA04B04) supported by the National Science and Technology Pillar Program During 11th-Five-year Plan of China Project(JN-200912) supported by Open Fund of Key Laboratory in Liaoning Province’s Universities,China
关键词 low ENERGY HOUSE ENERGY CONSUMPTION DESIGN PHPP software PASSIVE HOUSE low energy house energy consumption design PHPP software passive house
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  • 1Utzinger D M, Klein S A. Mitchell J W. the effect of air flow rate in collector-storage walls [J]. Solar energy, 1980, 25(6): 511-519
  • 2Tarazi, Nasri Khadir. A Model of a Trombe wall [J], Renewable Energy, 1991, 1(3-4): 533-541
  • 3Smolec W, Thomas A. Theoretical and experimental investigations of heat transfer in a Trombe wall [J]. Energy Conversion and Management, 1993, 34(5): 385-400
  • 4Ormiston S J, Raithby G D, Hollands K G T. Numerical predictions of convection in a Yrombe wall system [J]. Int. J. Heat Mass Transfer, 1986, 29 (6): 869-877
  • 5Yedder, R Ben, Bilgen E. Natural convection and conduction in Trombe wall systems [J]. International Journal of Heat and Mass Transfer, 1991,34 (4-5): 1237-1248
  • 6Lukic N. The transient house heating condition-the building envelope response factor (BER) [J]. Renewable Energy, 2003, 28(4): 523-532
  • 7Lukic N. The transient house heating condition-the daily changes of the building envelope response factor (BER) [J]. Renewable Energy, 2005, 30(4): 537-549
  • 8Xiande Fang, Yuanzhe Li. Numerical simulation and sensitivity analysis of lattice passive solar heating walls [J]. Solar Energy,2000, 69( 1 ): 55-66
  • 9Torcellini P, Pless S. Trombe walls in low-energy buildings:practical experiences [C]. Proceeding of WorldRenewable Energy Congress Ⅷ. Colorado. 2004
  • 10Zhai Z, Chen Q, Haves P, et al. On approaches to couple energy simulation and computational fluid dynamics programs [J].Building and Environment, 2002, 37(8-9): 857-864

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