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两组辐射方案对中国短期天气过程影响的比较和探讨 被引量:8

Impact of Two Group Radiation Parameterization Schemes on Simulation of Short-Range Weather Process in China
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摘要 为了比较长短波辐射方案对中国短期天气过程模拟的影响,并进一步完善中尺度模式MM5中的辐射过程的参数化方案,将WRF中Goddard短波辐射参数化方案移植到模式MM5中。利用移植的方案和MM5模式原有的参数化方案,设计了两组试验方案。通过对2002年第16号台风个例和2002年12月19~24日北方降雪的个例模拟,结果表明:选用不同的辐射参数化方案对两个个例模拟结果具有较明显的影响,较详细的长短波辐射参数化方案组合模拟的各种辐射量和云更加细致合理地反映地形、台风、副高和槽脊的结构和位置;台风降水中心强度改进近三分之一,北方降雪强度也有一定的改进,更加接近实况。 In order to compare the impact of radiation parameterization schemes on simulated short-range weather process and improve the radiation parameterization schemes in Mesoscale Model Version 5 (MM5), the scheme of Goddard short-wave radiation parameterization has been replanted from Weather Research and Forecast Model(WRF)to MM5. With the planted scheme and radiation parameterizations in MM5 two groups of experiment schemes have been designed to simulate ‘Sinlaku’ typhoon (2002) and the case of snowfall occurred in 1924 December 2002. The results show that selection of radiation parameterization schemes has distinct impact on the simulation. The results simulated by the group with the detailed long-wave and short-wave radiation parameterization scheme reflect the structure and location of cloud and radiation on plateau terrain, typhoon, subtropical high and trough/ridge more particularly and reasonably; the intensity of typhoon rain center is improved about 1/3, and there are also some improvements on the intensity of north heavy snow, which more approaches the observation.
出处 《大气科学》 CSCD 北大核心 2005年第4期654-670,共17页 Chinese Journal of Atmospheric Sciences
基金 中国科学科院知识创新工程重要方向项目KZCX3SW213 国家自然科学基金资助项目49675267
关键词 辐射参数化 短期预报 数值试验 MM5模式 radiation parameterization, short-range forecast, numerical experiment, MM5
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参考文献13

  • 1沈元芳,伊兰,陈谊,胡国权.辐射参数化的变化对模式中期和月预报的影响[J].应用气象学报,2002,13(3):299-311. 被引量:6
  • 2沈元芳,F. Baer,王超.初始场和长波辐射对气候模拟的影响[J].应用气象学报,2003,14(3):266-276. 被引量:5
  • 3Lacis A A, Hansen J E. A parameterization for the absorption of solar radiation in the earth's atmosphere. J. Atmos. Sci., 1974, 31: 118~133. 被引量:1
  • 4Stephens G L. Radiation profiles in extended water clouds. Part II: Parameterization Schemes. J. Atmos. Sci., 1978, 35: 2123~2132. 被引量:1
  • 5Dudhia J. Numerical study of convection observed during the winter monsoon experiment using a mesoscale two-dimensional model. J. Atmos. Sci., 1989, 46: 3077~3107. 被引量:1
  • 6Hack J J, Boville B A, Briegleb B P, et al. Description of the NCAR Community Climate Model (CCM2). NCAR Technical Note, NCAR/TN-382+STR, 1993, 120pp. 被引量:1
  • 7Mlawer E J, Taubman S J, Brown P D, et al. Radiative transfer for inhomogeneous atmosphere: RRTM, a validated correlated-k model for the longwave. J. Gephys. Res., 1997, 102(D14): 16663~16682. 被引量:1
  • 8Chou M D, Suarez M J. A solar radiation parameterization (CLIRAD-SW) for atmospheric studies. 1999. http: //climate.gsfc.nasa.gov/~chou. 被引量:1
  • 9Arking A A, Grossman K. The influence of line shape and band structure in temperatures in planetary atmospheres. J. Atmos. Sci., 1972, 29: 937~949. 被引量:1
  • 10Koster R D, Suarez M J. Relative contribution of land and ocean processes to precipitation variability. J. Geophy. Res., 1995, 100: 13775~13790. 被引量:1

二级参考文献33

  • 1[1]Morcrette J J, Fouquart Y. On systematic errors in parameterized calculation of longwave radiation transfer. Quart. J. Rey. Meteor. Soc., 1985,111:691~708. 被引量:1
  • 2[2]Scott N A, Chedin A. A fast line-by-line method for atmospheric absorption computations:The Automatized Atmospheric Absorption Atlas. J. Appl. Meteor., 1981,20:802~812. 被引量:1
  • 3[3]Simmons A J, Burridge D M, Jarraud M, et al. The ECMWF medium-range prediction models:Development of the numerical formulations and the impact of increased resolution. Meteor. Atmos,Phys.,1988,40:28~60. 被引量:1
  • 4[4]Tiedtke M, Gelegn J-F, Hollingsworth A, et al. ECMWF model: Parameterization of subgrid-scale processes. ECMWF Tech.Rep. 1979,No.10. 被引量:1
  • 5[5]Geleyn J F, Hollingsworth A. An economical analytical method for the computation of the interaction between scattering and line absorption of radiation.Beitr. Phys. Atmos.,1979,52:1~16. 被引量:1
  • 6[6]Ritter B. The impact of an alternative treatment of infrared radiation on the performance of the ECMWF forecast model. In: G Fiocco, Ed.IRS'84: Current Problems in Atmospheric Radiation, 1984. 277~280. 被引量:1
  • 7[7]Slingo A, Slingo J M. The response of a general circulation model to cloud longwave radiative forcing Ⅰ:Introduction and initial experiments. Quart. J. Roy. Meteor. Soc., 1988,114:1027~1062. 被引量:1
  • 8[8]Morcrette J J. Impact of changes to the radiation transfer parameterization plus cloud optical properties in the ECMWF model. Mon.Wea.Rew., 1990,118:847~872. 被引量:1
  • 9[9]Morcrette J J. Radiation and cloud radiative properties in the European Center for Medium Range Weather Forecasts forecasting system. J.Geophys.Res.,1991,96(D5): 9121~9132. 被引量:1
  • 10[1]Mlawer E J, Taubman S J, Brown P D, et al. Radiative transfer for inhomogeneous atmosphere: RRTM, a validated correlated-k model for the longwave. J Geophys Res, 1997,102(D14): 16663~ 16682 被引量:1

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