Chen, S.-J., Y.-H. Kuo, W. Wang, Z.-Y. Tao, B. Cui, 1998:A case modeling study of heavy rainstorms along the Mei-yu front. Mon. Wea. Rev., 126, 2330-2351.
Chou, M.-D., M. J. Suarez, 1994:An efficient thermal infrared radiation parameterization for use in general circulation model. NASA Tech. Memo. 104606, Vol. 3, 85 pp. [Available online at NASA/Goddard Space Flight Center, Code 913, Greenbelt, MD 20771.]
Chou, M.-D., D. P. Kratz, W. Ridgway, 1991:Infrared radiation parameterization in numerical climate models. J. Climate, 4, 424-437.
Chou, M.-D., M. J. Suarez, C.-H. Ho, M. M.-H. Yan, K.-T. Lee, 1998:Parameterizations for cloud overlapping and shortwave single-scattering properties for use in general circulation and cloud ensemble models. J. Climate, 11, 201-214.
Cui, X., 2008:A cumulus ensemble modeling study of diurnal variations of tropical convective and stratiform rainfall. J. Geophys. Res., 113, D02113, doi: 10.1029/2007JD008990.
Cui, X. P., X. F. Li, 2006:Role of surface evaporation in surface rainfall processes. J. Geophys. Res., 111, D17112, doi: 10.1029/2005JD006876.
Gao, S. T., 2007: A three dimensional dynamic vorticity vector associated with tropical oceanic convection. J. Geophys. Res., 113, doi: 10.1029/2006JD008247.
Gao, S. T., X. F. Li, 2008a:Cloud-Resolving Modeling of Convective Processes. Springer, Dordrecht, 206 pp.
Gao, S. T., X. F. Li, 2008b:Responses of tropical deep convective precipitation systems and their associated convective and stratiform regions to the large-scale forcing. Quart. J. Roy. Meteor. Soc., 134, 2127-2141.
Gao, S. T., X. F. Li, 2010:Precipitation equations and their applications to the analysis of diurnal variation of tropical oceanic rainfall. J. Geophys. Res., 115, D08204, doi: 10.1029/2009JD012452.
Gao, S. T., X. F. Li, 2011:Can water vapour process data be used to estimate precipitation efficiency. Quart. J. Roy. Meteor. Soc., 137, 969-978.
Gao, S. T., S. X. Zhao, X. P. Zhou, S. Q. Sun, S. Y. Tao, 2003:Progress of research on sub-synoptic scale and mesoscale torrential rain systems. Chinese J. Atmos. Sci., 27, 618-627. (in Chinese)
Gao, S. T., F. Ping, X. F. Li, W.-K. Tao, 2004:A convective vorticity vector associated with tropical convection: A two-dimensional cumulus ensemble modeling study. J. Geophys. Res., 109, D14106, doi: 10.1029/2004JD004807.
Gao, S. T., X. P. Cui, Y. S. Zhou, X. F. Li, 2005a:Surface rainfall processes as simulated in a cloud resolving model. J. Geophys. Res., 110, D10202, doi: 10.1029/2004JD005467.
Gao, S. T., X. P. Cui, Y. S. Zhou, X. F. Li, W.-K. Tao, 2005b:A modeling study of moist and dynamic vorticity vectors associated with 2D tropical convection. J. Geophys. Res., 110, D17104, doi: 10.1029/2004JD005675.
Gao, S. T., L. K. Ran, X. F. Li, 2006:Impacts of ice microphysics on rainfall and thermodynamic processes in the tropical deep convective regime: A 2D cumulus ensemble modeling study. Mon. Wea. Rev., 134, 3015-3024.
Gao, S. T., X. F. Li, W.-K. Tao, C.-L. Shie, S. Lang, 2007:Convective and moist vorticity vectors associated with tropical oceanic convection: A three-dimensional cumulus ensemble simulation. J. Geophys. Res., 112, D01105, doi: 10.1029/ 2006JD007179.
Grabowski, W. W., X. Wu, M. W. Moncrieff, W. D. Hall, 1998:Cumulus ensemble model of tropical cloud systems during Phase III of GATE. Part II: Effects of resolution and the third spatial dimension. J. Atmos. Sci., 55, 3264-3282.
Hu, G. Q., Y. H. Ding, 2003:A study on the energy and water cycles over Changjiang-Huaihe River Basins during the 1991 heavy rain periods. Acta Meteorologica Sinica, 61, 508-526.
Khairoutdinov, M. F., D. A. Randall, 2003:Cumulus ensemble modeling of the ARM summer 1997 IOP: Model formulation, results, uncertainties, and sensitivities. J. Atmos. Sci., 60, 607-625.
Krueger, S. K., Q. Fu, K. N. Liou, H.-N. S. Chin, 1995:Improvement of an ice-phase microphysics parameterization for use in numerical simulations of tropical convection. J. Appl. Meteor., 34, 281-287.
Li, X., S. Gao, 2011: Precipitation Modeling and Quantitative Analysis. Springer, 240 pp.
Li, X., X. Shen, 2013:Rain microphysical budget over tropical deep convective regime. J. Meteor. Soc. Japan, 91, 801-815.
Li, X. F., C.-H. Sui, K.-M. Lau, M.-D. Chou, 1999:Large-scale forcing and cloud-radiation interaction in the tropical deep convective regime. J. Atmos. Sci., 56, 3028-3042.
Li, X. F., C.-H. Sui, K.-M. Lau, 2002a:Precipitation efficiency in the tropical deep convective regime: A 2-D cloud resolving modeling study. J. Meteor. Soc. Japan, 80, 205-212.
Li, X. F., C.-H. Sui, K.-M. Lau, 2002b:Dominant cloud microphysical processes in a tropical oceanic convective system: A 2-D cloud resolving modeling study. Mon. Wea. Rev., 130, 2481-2491.
Li, X., X. Shen, J. Liu, 2011:A partitioning analysis of tropical rainfall based on cloud budget. Atmospheric Research, 102, 444-451.
Lin, Y.-L., R. D. Farley, H. D. Orville, 1983:Bulk parameterization of the snow field in a cloud model. Journal of Climate and Applied Meteorology, 22, 1065-1092.
Ninomiya, K., T. Akiyama, 1992:Multi-scale feature of Baiu, the summer monsoon over Japan and the East Asia. J. Meteor. Soc. Japan, 70, 467-495.
Ping, F., Z. X. Luo, X. F. Li, 2007:Microphysical and radiative effects of ice microphysics on tropical equilibrium states: A two-dimensional cumulus ensemble modeling study. Mon. Wea. Rev., 135, 2794-2802.
Ping, F., Z. X. Luo, X. F. Li, 2008:Kinematics, cloud microphysics and spatial structures of tropical cloud clusters: A two-dimensional cloud-resolving modeling study. Atmospheric Research, 88, 323-336.
Rutledge, S. A., P. V. Hobbs, 1983:The mesoscale and microscale structure and organization of clouds and precipitation in midlatitude cyclones. Part VIII: A model for the "seeder-feeder" process in warm-frontal rainbands. J. Atmos. Sci., 40, 1185-1206.
Rutledge, S. A., P. V. Hobbs, 1984:The mesoscale and microscale structure and organization of clouds and precipitation in midlatitude cyclones. Part XII: A diagnostic modeling study of precipitation development in narrow cold-frontal rainbands. J. Atmos. Sci., 41, 2949-2972.
Shen, X. Y., Y. Wang, X. F. Li, 2011:Effects of vertical wind shear and cloud radiative processes on responses of rainfall to the large-scale forcing during pre-summer heavy rainfall over southern China. Quart. J. Roy. Meteor. Soc., 137, 236-249.
Soong, S. T., Y. Ogura, 1980:Response of tradewind cumuli to large-scale processes. J. Atmos. Sci., 37, 2035-2050.
Soong, S. T., W.-K. Tao, 1980:Response of deep tropical cumulus clouds to mesoscale processes. J. Atmos. Sci., 37, 2016-2034.
Sui, C.-H., K.-M. Lau, W.-K. Tao, J. Simpson, 1994:The tropical water and energy cycles in a cumulus ensemble model. Part I: Equilibrium climate. J. Atmos. Sci., 51, 711-728.
Sui, C.-H., X. Li, K.-M. Lau, 1998:Radiative-convective processes in simulated diurnal variations of tropical oceanic convection. J. Atmos. Sci., 55, 2345-2359.
Sui, C.-H., X. Li, M.-J. Yang, H.-L. Huang, 2005:Estimation of oceanic precipitation efficiency in cloud models. J. Atmos. Sci., 62, 4358-4370.
Sui, C.-H., X. Li, M.-J. Yang, 2007:On the definition of precipitation efficiency. J. Atmos. Sci., 64, 4506-4513.
Tao, S., 1996:Some issues on monsoon studies. Outlook on Advanced Atmospheric Sciences, Meteorological Press, Beijing, 35-36. (in Chinese)
Tao, W.-K., S.-T. Soong, 1986:The study of the response of deep tropical clouds to mesoscale processes: Three-dimensional numerical experiments. J. Atmos. Sci., 43, 2653-2676.
Tao, W.-K., J. Simpson, 1993:The Goddard Cumulus Ensemble model. Part I: Model description. Terr. Atmos. Oceanic Sci., 4, 35-72.
Tao, W.-K., J. Simpson, S.-T. Soong, 1987:Statistical properties of a cloud ensemble: A numerical study. J. Atmos. Sci., 44, 3175-3187.
Tao, W. -K, J. Simpson, M. McCumber, 1989:An ice-water saturation adjustment. Mon. Wea. Rev., 117, 231-235.
Tao, W.-K., J. Simpson, C.-H. Sui, B. Ferrier, S. Lang, J. Scala, M.-D. Chou, K. Pickering, 1993:Heating, moisture and water budgets of tropical and midlatitude squall lines: Comparisons and sensitivity to longwave radiation. J. Atmos. Sci., 50, 673-690.
Tompkins, A. M., 2000:The impact of dimensionality on long-term cumulus ensemble model simulations. Mon. Wea. Rev., 128, 1521-1535.
Wang, D. H., X. F. Li, W.-K. Tao, Y. Liu, H. G. Zhou, 2009:Torrential rainfall processes associated with a landfall of severe tropical Storm Bilis (2006): A two-dimensional cumulus ensemble modeling study. Atmospheric Research, 91, 94-104.
Wang, J.-J., X. Li, L. Carey, 2007:Evolution, structure, cloud microphysical and surface rainfall processes of a monsoon convection during the South China Sea Monsoon Experiment. J. Atmos. Sci., 64, 360-380.
Wang, Y., X. Shen, X. Li, 2010:Microphysical and radiative effects of ice clouds on responses of rainfall to the large-scale forcing during pre-summer heavy rainfall over southern China. Atmospheric Research, 97, 35-46.
Wang, Z., G. Q. Zhai, K. Gao, 2003:Analysis and numerical simulation of a meso-scale vortex in the middle reaches of the Yangtze River. Acta Meteorologica Sinica, 61, 66-77.
Wu, X. Q., W. W. Grabowski, M. W. Moncrieff, 1998:Long-term behavior of cloud systems in TOGA COARE and their interactions with radiative and surface processes. Part I: Two-dimensional modeling study. J. Atmos. Sci., 55, 2693-2714.
Xu, K.-M., and Coauthors, 2002:An intercomparison of cloud resolving models with the Atmospheric Radiation Measurement summer 1997 Intensive Observation Period data. Quart. J. Roy. Meteor. Soc., 128, 593-624.
Xu, X., F. Xu, B. Li, 2007:A cumulus ensemble modeling study of a torrential rainfall event over China. J. Geophys. Res., 112, D17204, doi: 10.1029/2006JD008275.
Yue, C., S. Shou, X. Li, 2009:Water vapor, cloud, and surface rainfall budgets associated with the landfall of Typhoon Krosa (2007): A two-dimensional cumulus ensemble modeling study. Adv. Atmos. Sci., 26, 1198-1208, doi: 10.1007/s00376-009-8135-2.
Zhai, G. Q., Z. Wang, B. He, 2003:Formation and evolution analysis of the mesoscale vortex group over the middle and lower reaches of the Yangtze River during Meiyu season. Acta Meteorologica Sinica, 61, 661-672.
Zhai, G., L. Zhou, Z. Wang, 2007:Analysis of a group of weak small-scale vortices in the planetary boundary layer in the Mei-yu front. Adv. Atmos. Sci., 24, 399-408, doi: 10.1007/s00376-007-0399-9.