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An Improved Method for Generating Typical Meteorological Years Used in Building Energy Simulation in China 被引量:2

An Improved Method for Generating Typical Meteorological Years Used in Building Energy Simulation in China
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摘要 The present study proposes an improved method for generating better typical meteorological years( TMYs) used in building energy simulation in China. Modifications are made to the commonly used Sandia method,by optimizing the weightings of indices and thus giving more emphasis to dry bulb temperature and relative humidity and less to wind velocity. After analyzing the solar heat gain on the vertical envelop,an index of diffuse radiation rather than direct normal radiation is added for solar radiation. Using the improved method proposed,TMYs for 5 representative cities of 5 major climate zones in China are generated from the meteorological data recorded during the period 1981—2010. The results show that,compared with previous studies,the monthly diffuse solar radiation of typical meteorological months generated by the improved method are the"closest"to the 30-year average,and the comparison between annual diffuse radiation for the TMY and the 30-year annual average is improved,while little adverse effect is produced on global horizontal radiation comparisons,indicating that the improved method is more suitable to generate the TMY data than previous studies. The present study proposes an improved method for generating better typical meteorological years (TMYs) used in building energy simulation in China. Modifications are made to the commonly used Sandia method, by optimizing the weightings of indices and thus giving more emphasis to dry bulb temperature and relative humidity and less to wind velocity. After analyzing the solar heat gain on the vertical envelop, an index of diffuse radiation rather than direct normal radiation is added for solar radiation. Using the improved method proposed, TMYs for 5 representative cities of 5 major climate zones in China are generated from the meteorological data recorded during the period 1981--2010. The results show that, compared with previous studies, the monthly diffuse solar radiation of typical meteorological months generated by the improved method are the "closest" to the 30-year average, and the comparison between annual diffuse radiation for the TMY and the 30-year annual average is improved, while little adverse effect is produced on global horizontal radiation comparisons, indicating that the improved method is more suitable to generate the TMY data than previous studies.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第1期17-24,共8页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the National Natural Science Foundation of China(Grant No.51278349) Foundation of Fujian Provincial Education Department(Grant No.JA13185)
关键词 TYPICAL METEOROLOGICAL YEAR improved method weighting MODIFICATION DIFFUSE solar radiation typical meteorological year improved method weighting modification diffuse solar radiation
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  • 1刘列明,吴恩华.一种基于点光源的三维阴影的实时生成算法[J].软件学报,2000,11(6):785-790. 被引量:8
  • 2江亿 李元哲 狄洪发.关于透过体系透过率计算方法的探讨[J].太阳能学报,1980,1(2):166-175.
  • 3Kasten F, Czeplak G. Solar and terrestrial radiation dependent on the amount and type of cloud[J]. Solar Energy, 1980, 24(2) :177-189.
  • 4Kasten F, Golchert H J,Stolley M. Parameterization of radiation fluxes as function of solar elevation, cloudiness and turbidity[C]//Solar. Radiation Data, Brussels, 1983 : 108-114.
  • 5Rigollier C, Bauer O, Wald L. On the clear sky model of the 4th European Solar Radiation Atlas with respect to the Heliosat method [J]. Solar Energy, 2000,68(1): 33-48.
  • 6Maxwell E L. METSTAT--the solar radiation model used in the production of the national solar radiation data base (NSRDB)[J]. Solar Energy, 1998, 62(4). 263-279.
  • 7Thevenard D, Brunger A. Typical weather years for international locations [M] //ASHRAE ( 2001 ), 2001.
  • 8Goff J A, Gratch S. Low-pressure properties of water from --160 to 212 F[G] // Trans of ASHVE, 1946: 95-122.
  • 9Hall I J, Prairie R R, Anderson H E, et al. Generation of typical meteorological years for'26 Solmet stations[G]//ASHRAE Trans, 1979,85 (2).
  • 10叶歆.建筑热环境.北京:清华大学出版社,1996

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  • 1Parmelee G V, Aubele W W. The shading of sunlit glass: an analysis of the effect of uniform spaced flat opaque slats [J]. ASHVE Transaction, 1952,58:377.
  • 2Pffommer P, Lomas K J, Kupke C H R. Solar radiation transport through slat-type blinds., a new model and its application for thermal simulation of buildings [J]. Solar Energy, 1996, 57(2): 77.
  • 3Pfrommer P. Thermal modeling of highly glazed spaces ED:. Leicester: De Montfort University, 1995.
  • 4Simmler H, Fischer U, Winkelmann F C. Solar-thermal window blind model for DOE- 2 ER]. Berkeley: Lawrence Berkeley National Laboratory, 1996.
  • 5Van Dijk Dick, Paul Kenny, Goulding John. WIS advanced windows information system, WIS reference manual [M]. Dublin: TNO Building and Construction Research Department of Sustainable Energy and Buildings, 1996.
  • 6Van Dijk Dick, Oversloot H. WIS, the European tool to calculate thermal and solar properties of windows and window components [- C ://Proceedings of Building Simulation. Eindhoven: TNO Building and Construction Research, 2003: 259-266.
  • 7International Standards Organizaiton. ISO 15099: 2003 Thermal performance of windows, doors, and shading devices - detailed calculations E S 1. Geneva: International Standards Organization, 2003.
  • 8中华人民共和国住房和城乡建设设JGJ/T151—2008建筑门窗玻璃幕墙热工计算规程[S].北京:中国建筑工业出版社,2008.
  • 9Lawrence Berkeley National Laboratory. Energy plus engineering reference 2010 E R]. Berkeley: Lawrence Berkeley National Laboratory. 2010.
  • 10Siegel R, Howell J R. Thermal radiation heat transfer:M]. Washington D C: Hemisphere Publishing Corporation, 1992.

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