1. Anderson, J. L., and Coauthors,2004:The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations.J. Climate, 17, 4641-4673.
2. Arakawa, O., and A. Kitoh,2005:Rainfall diurnal variation over the Indonesian maritime continent simulated by 20 km-mesh GCM.SOLA, 1, 109-112.
3. Bellouin, N.,O. Boucher,J. Haywood,C. Johnson,A. Jones,J. Rae, and S. Woodward,2007: Improved representation of aerosols for HadGEM2. Meteorological Office Hadley Centre Technical Note, 73, 42pp.
4. Betts, A. K.,1986:A new convective adjustment scheme 1: Observational and theoretical basis.Quart. J. Roy. Meteor. Soc., 112, 677-691.
5. Betts, A. K., and C. Jakob,2002:Study of diurnal cycle of convective precipitation over Amazonia using a single column model.J. Geophys. Res., 107(D23), 4732, doi:10.1029/2002JD002264.
6. Betts, A. K., and M. J. Miller,1986:A new convective adjustment scheme 2: Single column tests using Gate Wave, Bomex, Atex and Arctic Air-Mass data sets.Quart. J. Roy. Meteor. Soc., 112, 693-709.
7. Boyle, J., and S. A. Klein,2010:Impact of horizontal resolution on climate model forecasts of tropical precipitation and diabatic heating for the TWP-ICE period.J. Geophys. Res., 115, D23113, doi:10.1029/2010JD014262.
8. Collier, J. C., and K. P. Bowman,2004:Diurnal cycle of tropical precipitation in a general circulation model.J. Geophys. Res., 109, D17105, doi:10.1029/2004JD004818.
9. Collins, W. J., and Coauthors,2008: Evaluation of the HadGEM2 model. Meteorological Office Hadley Centre Technical Note, 74, 46pp.
10. Dai, A., and K. E. Trenberth,2004:The diurnal cycle and its depiction in the community climate system model.J. Climate, 17, 930-951.
11. Duffy, P. B.,B. Govindasamy,J. P. Iorio,J. Milovich,K. R. Sperber,K. E. Taylor,M. F. Wehner, and S. L. Thompson,2003:High-resolution simulations of global climate, part 1: Present climate.Climate Dyn., 21, 371-390.
12. Gates, W. L., and Coauthors,1999:An overview of the results of the Atmospheric Model Intercomparison Project (AMIP I).Bull. Amer. Meteor. Soc., 80, 29-55.
13. Huffman, G. J., and Coauthors,2007:The TRMM multisatellite precipitation analysis (TMPA): Quasi-global, multiyear, combined-sensor precipitation estimates at fine scales.J. Hydrometeorology, 8, 38-55.
14. Iguchi, T.,T. Kozu,R. Meneghini,J. Awaka, and K. Okamoto,2000:Rain-profiling algorithm for the TRMM precipitation radar.J. Appl. Meteor., 39, 2038-2052.
15. Kummerow, C., and Coauthors,2001:The evolution of the goddard profiling algorithm (GPROF) for Rainfall Estimation from passive microwave sensors.J. Appl. Meteoro., 40, 1801-1820.
16. Lee, M. I., and Coauthors,2007:Sensitivity to horizontal resolution in the AGCM simulations of warm season diurnal cycle of precipitation over the United States and Northern Mexico.J. Climate, 20, 1862-1881.
17. Li, J.,R. Yu, and T. Zhou,2008:Seasonal variation of the diurnal cycle of rainfall in southern contiguous China.J. Climate, 21, 6036-6043.
18. Li, L. J., and Coauthors,2013:The flexible global ocean-atmosphere-land system model, Grid-point Version 2: FGOALS-g2.Adv. Atmos. Sci. 30, 543-560, doi: 10.1007/s00376-012-2140-6.
19. Lin, X., D. A. Rand all, and L. D. Fowler,2000:Diurnal variability of the hydrologic cycle and radiative fluxes: Comparisons between observations and a GCM.J. Climate, 13, 4159-4179.
20. Maidens, A., and S. Derbyshire,2006:Improving mass flux profiles in the Gregory-Rowntree convection scheme using adaptive detrainment.Quart. J. Roy. Meteor. Soc., 128, 2108-2121.
21. Mizuta, R., and Coauthors,2012:Climate Simulations Using MRI-AGCM3.2 with 20-km Grid.J. Meteor. Soc. Japan, 90A, 233-258.
22. Moorthi, S., and M. J. Suarez,1992:Relaxed Arakawa-Schubert-A parameterization of moist convection for general-circulation models.Mon. Wea. Rev., 120, 978-1002.
23. Ploshay, J. J., and N. C. Lau,2010:Simulation of the diurnal cycle in tropical rainfall and circulation during boreal summer with a high-resolution GCM.Mon. Wea. Rev., 138, 3434-3453.
24. Saha, S., and Coauthors,2010:The NCEP climate forecast system reanalysis.Bull. Amer. Meteor. Soc., 91, 1015-1057.
25. Sato, T.,H. Miura,M. Satoh,Y. N. Takayabu, and Y. Q. Wang,2009:Diurnal cycle of precipitation in the tropics simulated in a global cloud-resolving model.J. Climate, 22, 4809-4826.
26. Sorooshian, S.,X. Gao,K. Hsu,R. A. Maddox,Y. Hong,H. V. Gupta, and B. Imam,2002:Diurnal variability of tropical rainfall retrieved from combined GOES and TRMM satellite information.J. Climate, 15, 983-1001.
27. Tokioka, T.,K. Yamazaki,A. Kitoh, and T. Ose,1988:The equatorial 30-60 day oscillation and the Arakawa-Schubert penetrative cumulus parameterization.J. Meteor. Soc. Japan, 66, 883-901.
28. Volodin, E.,N. Dianskii, and A. Gusev,2010:Simulating present-day climate with the INMCM4.0 coupled model of the atmospheric and oceanic general circulations.Izvestiya Atmospheric and Oceanic Physics, 46, 414-431.
29. Wang, F.,R. Yu,H. Chen, J. Li and W. Yuan,2011:The characteristics of rainfall diurnal variation over the Southwestern China.Torrential Rain and Disasters, 30, 117-121. (in Chinese)
30. Wu, T.,2012:A mass-flux cumulus parameterization scheme for large-scale models: Description and test with observations.Climate Dyn., 38, 725-744.
31. Wu, T., and Coauthors,2013:Global carbon budgets simulated by the Beijing Climate Center Climate System Model for the last century.J. Geophys. Res., 118, 4326-4347, doi:10.1002/jgrd.50320.
32. Xie, S., and M. Zhang,2000:Impact of the convection triggering function on single-column model simulations.J. Geophys. Res., 105, 14983-14996.
33. Yang, G. Y., and J. Slingo,2001:The diurnal cycle in the tropics.Mon. Wea. Rev., 129, 784-801.
34. Yu, R.,T. Zhou,A. Xiong,Y. Zhu, and J. Li,2007a:Diurnal variations of summer precipitation over contiguous China.Geophys. Res. Lett., 34, L01704, doi: 10.1029/2006GL028129.
35. Yu, R.,Y. Xu,T. Zhou, and J. Li,2007b:Relation between rainfall duration and diurnal variation in the warm season precipitation over central eastern China.Geophys. Res. Lett., 34, L13703, doi: 10.1029/2007GL030315.
36. Yu, R.,J. Li,W. Yuan, and H. Chen,2010:Changes in characteristics of late-summer precipitation over eastern China in the past 40 years revealed by hourly precipitation data.J. Climate, 23, 3390-3396.
37. Yuan, W.,J. Li,H. Chen, and R. Yu,2012a:Intercomparison of summer rainfall diurnal features between station rain gauge data and TRMM 3B42 product over central eastern China.Int. J. Climatol., 32, 1690-1696.
38. Yuan, W.,R. Yu,M. Zhang,W. Lin,H. Chen, and J. Li,2012b:Regimes of diurnal variation of summer rainfall over subtropical East Asia.J. Climate, 25, 3307-3320.
39. Yuan, W.,R. Yu,M. Zhang,W. Lin,J. Li, and Y. Fu,2013:Diurnal cycle of summer precipitation over subtropical East Asia in CAM5.J. Climate, 26, 3159-3172.
40. Yukimoto, S., and Coauthors,2011: Meteorological Research Institute-Earth System Model v1 (MRIESM1): Model description. Tech. Rep. of the Meteorological Research Institute, No. 64, 8-37.
41. Zhang, G.,2002:Convective quasi-equilibrium in midlatitude continental environment and its effect on convective parameterization.J. Geophys. Res., 107, D14, 4220, doi: 10.1029/2001JD001005.
42. Zhang, G. J.,2003:Roles of tropospheric and boundary layer forcing in the diurnal cycle of convection in the US southern great plains.Geophys. Res. Lett., 30, 2281, doi:10.1029/2003GL018554.
43. Zhang, G. J., and M. Q. Mu,2005:Simulation of the Madden-Julian oscillation in the NCAR CCM3 using a revised Zhang-McFarlane convection parameterization scheme.J. Climate, 18, 4046-4064.
44. Zhou, T.,R. Yu,H. Chen,A. Dai, and Y. Pan,2008:Summer precipitation frequency, intensity, and diurnal cycle over China: a comparison of satellite data with rain gauge observations.J. Climate, 21, 3997-4010.