Annamalai, H., and J. M. Slingo, 2001: Active/break cycles: Diagnosis of the intraseasonal variability of the Asian summer monsoon. Climate Dyn., 18, 85-102.
Benedict, J. J., E. D. Maloney, A. H. Sobel, D. M. Frierson, and L. J. Donner, 2013: Tropical intraseasonal variability in version 3 of the GFDL atmosphere model. J. Climate, 26, 426-449.
Bueh, C. L., N. Shi, L. R. Ji, J. Wei, and S. Y. Tao, 2008: Features of the EAP events on the medium-range evolution process and the mid-and high-latitude Rossby wave activities during the Meiyu period. Chinese Sci. Bull., 53, 610-623.
Chou, C., and Y. H. Hsueh, 2010: Mechanisms of northward-propagating intraseasonal oscillation-A comparison between the Indian Ocean and the western north Pacific. J. Climate, 23, 6624-6640.
Ding, Y. H., 2007: The variability of the Asian summer monsoon. J. Meteor. Soc. Japan, 85B, 21-54.
Enomoto, T., B. J. Hoskins, and Y. Matsuda, 2003: The formation mechanism of the Bonin high in August. Quart. J. Roy. Meteor. Soc., 129, 157-178.
Flatau, M., P. J. Flatau, P. Phoebus, and P. P. Niiler, 1997: The feedback between equatorial convection and local radiative and evaporative processes: The implications for intraseasonal oscillations. J. Atmos. Sci., 54, 2373-2386.
Gadgil, S., and S. Sajani, 1998: Monsoon precipitation in the AMIP runs. Climate Dyn., 14, 659-689.
Gates, W. L., 1992: AMIP: The atmospheric model intercomparison project. Bull. Amer. Meteor. Soc., 73, 1962-1970.
Huang, R. H., and Y. F. Wu, 1989: The influence of ENSO on the summer climate change in China and its mechanisms. Adv. Atmos. Sci., 6, 21-32.
Inness, P. M., and J. M. Slingo, 2003: Simulation of the Madden-Julian oscillation in a coupled general circulation modelPart I: Comparison with observations and an atmosphere-only GCM.. J. Climate, 16, 345-364.
Kanamitsu, M., W. Ebisuzaki, J. Woollen, S. K. Yang, J. J. Hnilo, M. Fiorino, and G. L. Potter, 2002: NCEP-DOE AMIP-II Reanalysis (R-2). Bull. Amer. Meteor. Soc., 83, 1631-1643.
Kang, I. S., C. H. Ho, Y. K. Lim, and K. M. Lau, 1999: Principal modes of climatological seasonal and intraseasonal variations of the Asian summer monsoon. Mon. Wea. Rev., 127, 322-340.
Kang ,I.S, and Coauthors, 2002: Intercomparison of the climatological variations of Asian summer monsoon precipitation simulated by 10 GCMs. Climate Dyn., 19, 383-395.
Kitoh, A., and S. Kusunoki, 2008: East Asian summer monsoon simulation by a 20-km mesh AGCM. Climate Dyn., 31, 389-401.
Lau, K. M., and P. H. Chan, 1986: Aspects of the 40-50 day oscillation during the northern summer as inferred from outgoing longwave radiation. Mon. Wea. Rev., 114, 1354-1367.
Lau, N. C., and J. Ploshay, 2009: Simulation of synoptic-and subsynoptic-scale phenomena associated with the East Asian summer monsoon using a high-resolution GCM. Mon. Wea. Rev., 137, 137-160.
Li, C. Y., X. L. Jia, J. Ling, W. Zhou, and C. D. Zhang, 2009: Sensitivity of MJO simulations to diabatic heating profiles. Climate Dyn., 32, 168-187.
Liang, X. Z., 1996: Description of a nine-level grid point atmospheric general circulation model. Adv. Atmos. Sci., 13, 269-298.
Liebmann, B., and C. A. Smith, 1996: Description of a complete (interpolated) outgoing longwave radiation dataset. Bull. Amer. Meteor. Soc., 77, 1275-1277.
Lin, Z. H., and Q. C. Zeng, 1997: Simulation of East Asian summer monsoon by using an improved AGCM. Adv. Atmos. Sci., 14, 513-526.
Lu, R. Y., 2001: Interannual variability of the summertime North Pacific subtropical high and its relation to atmospheric convection over the warm pool. J. Meteor. Soc. Japan, 79, 771-783.
Madden, R. A., and P. R. Julian, 1994: Observations of the 40-50-day tropical oscillation-A review. Mon. Wea. Rev., 122, 814-837.
Nitta, T., 1987: Convective activities in the tropical western pacific and their impact on the northern hemisphere summer circulation. J. Meteor. Soc. Japan, 65, 373-390.
Oouchi, K., A. T. Noda, M. Satoh, B. Wang, S. P. Xie, H. G. Takahashi, and T. Yasunari, 2009: Asian summer monsoon simulated by a global cloud-system-resolving model: Diurnal to intra-seasonal variability. Geophys. Res. Lett., 36, L11815, doi: 10.1029/2009GL038271.
Sperber, K. R., and T. N. Palmer, 1996: Interannual tropical rainfall variability in general circulation model simulations associated with the Atmospheric Model Intercomparison Project. J. Climate, 9, 2727-2750.
Su, T. H., and F. Xue, 2010: The intraseasonal variation of summer monsoon circulation and rainfall in East Asia. Chinese J. Atmos. Sci., 34, 611-628. (in Chinese)
Su, T. H., and F. Xue, 2011: Two northward jumps of the summertime western Pacific subtropical high and their associations with the tropical SST anomalies. Atmos. Oceanic Sci. Lett., 4, 98-102.
Suzuki, S., and B. J. Hoskins, 2009: The large-scale circulation change at the end of the Baiu season in Japan as seen in ERA-40 data. J. Meteor. Soc. Japan, 87, 83-99.
Tao, S. Y., and L. X. Chen, 1987: A review on the East Asian summer monsoon. Monsoon Meteorology. C. P. Chang and T. N. Krishnamurti,Eds.,Oxford University Press, 60-92.
Wang, B., and X. H. Xu, 1997: Northern hemisphere summer monsoon singularities and climatological intraseasonal oscillation. J. Climate, 10, 1071-1085.
Wang, H. J., and X. Q. Bi, 1996: The East Asian monsoon simulation with IAP AGCMs-A composite study. Adv. Atmos. Sci., 13, 260-264.
Waliser, D. E., K. M. Lau, and J. H. Kim, 1999: The influence of coupled sea surface temperatures on the Madden-Julian oscillation: A model perturbation experiment. J. Atmos. Sci., 56, 333-358.
Woolnough, S. J., J. M. Slingo, and B. J. Hoskins, 2001: The relationship between convection and sea surface temperature on intraseasonal timescales. J. Climate, 13, 2086-2104.
Xie, P. P., and P. A. Arkin, 1997: Global precipitation: A 17-year monthly analysis based on gauge observations, satellite estimates, and numerical model outputs. Bull. Amer. Meteor. Soc., 78, 2539-2558.
Xue, F., X. Q. Bi, and Y. H. Lin, 2001: Modeling the global monsoon system by IAP 9L AGCM. Adv. Atmos. Sci., 18, 404-412.
Zeng, Q. C., D. L. Zhang, M. Zhang, R. T. Zuo, and J. X. He, 2005: The abrupt seasonal transitions in the atmospheric general circulation and the onset of monsoonsPart I: Basic theoretical method and its application to the analysis of climatological mean observations. . Climatic Environmental Research, 10, 285-302. (in Chinese)
Zhang, C. D., M. Dong, H. H. Hendon, E. D. Maloney, A. Marshall, K. R. Sperber, and W. Wang, 2006: Simulations of the Madden-Julian oscillation in four pairs of coupled and uncoupled global models. Climate Dyn., 27, 573-592.
Zhang, G. J., and N. A. McFarlane, 1995: Sensitivity of climate simulations to the parameterization of cumulus convection in the Canadian Climate Centre general circulation model. Atmos.-Ocean, 33, 407-446.
Zhang, H., 2009: Development of IAP Atmospheric General Circulation Model Version 4.0 and its climate simulations. Ph. D. dissertation,Institute of Atmospheric Physics, Chinese Academy of Sciences, 194 pp. (in Chinese)
Zhang, L. N., B. Z. Wang, and Q. C. Zeng, 2009: Impact of the Madden-Julian oscillation on summer rainfall in southeast China. J. Climate, 22, 201-216.
Zhang, X. H., 1990: Dynamical framework of IAP nine-level atmospheric general circulation model. Adv. Atmos. Sci., 7, 66-77.
Zhao, Z. G., 1999: Droughts and Floods in China during Summer and Their Environmental Fields. China Meteorological Press, 297 pp. (in Chinese)
Zhou, T. J., and L. W. Zou, 2010: Understanding the predictability of East Asian summer monsoon from the reproduction of land-sea thermal contrast change in AMIP-type simulation. J. Climate, 23, 6009-6026.
Zhou, T. J., B. Wu, and B. Wang, 2009: How well do atmospheric general circulation models capture the leading modes of the interannual variability of the Asian-Australian monsoon? J. Climate, 22, 1159-1173.