Jin X, Zhang X, Zhou T. Fundamental framework and experiments of the third generation of IAP/LASG world ocean general circulation model. Adv. Atmos. Sci. , 1999, 16 (2): 197-215
[2]
Liu Hailong, Zhang Xuehong, Li Wei, et al. An eddy-permitting oceanic general circulation model and its preliminary evaluation. Adv. Atmos. Sci. , 2004, 21:675-690
[3]
俞永强 Antoine Izard.IAP/LASG海洋环流模式对风应力的响应[J].大气科学,:.
[4]
Levitus S, Boyer T P. World Ocean Atlas 1994 Volume 4: Temperature. NOAA Atlas NESDIS 4. US Department of Commerce. Washington, D C, 1994, 1-177
[5]
Levitus S, Burgett R, Boyer T P. World Ocean Atlas 1994 Volume3 : Salinity. NOAA Atlas NESDIS 3. US Department of Commerce. Washington, D C, 1994, 1-99
[6]
Frank R. An atlas of surface fluxes based on the ECMWF reanalysis-A climatological dataset to force global ocean general circulation models. Report No. 323, Max-Planck-Institut fur Meteorologie, Hamburg, 2001, 1-31
Simmons A J, Gibson J K. ERA-40 Project Plan, ERA-20 Project Rep. 1. ECMWF, 2000
[9]
Carton J, Giese B. Simple Ocean Data Assimilation (SODA) reanalysis effort. CLIVER Workshop on Ocean Reanalysis. 2004
[10]
Rayner N A, Parker D E, Horton E B, et al. Global analyses of sea surface temperature, sea ice, and night marine air temperature since the late nineteenth century. J. Geophys. Res., 2003, 108 (D14), 4407, doi: 10. 1029/2002JD002670
[11]
Jin F-F. An equatorial ocean recharge paradigm for ENSO. Part Ⅰ.- Conceptual model. J. Atmos. Sci. , 1997, 54: 811-829
[12]
Jin F-F. An equatorial ocean recharge paradigm for ENSO. Part Ⅱ: A stripped-down coupled model. J. Atmos. Sci., 1997, 54:830-847
Wu A, Hsieh W W. Nonlinear interdecadal changes of the El Nino - Southern Oscillation. Climate Dyn. , 2003, 21 : 719- 730
[15]
Latif M, Sterl A, Majer-Reimer E, et al. Climate variability in a coupled GCM. Part Ⅰ: The tropical Pacific. J. Climate, 1993, 4:5-21
[16]
Thompson C J, Battisti D S. A linear stochastic dynamical model of ENSO. Part Ⅰ: Model development. J. Climate, 2000, 14:445-466
[17]
Jin F-F, An S-I, Timmermann A, et al. Strong El Nino events and nonlinear dynamical heating. Geophys. Res. Lett. , 2003, 30 (3), 1120, doi: 10. 1029/2002GL016356
[18]
An S-I, Jin F-F. Nonlinearity and asymmetry of ENSO. J.Climate, 2004, 17:2399-2412
An W W, Hsieh F-F, Jin A. Nonlinear analysis of the ENSO cycle and its interdecadal changes. J. Climate, 2005, 18: 3229-3239
[21]
Kug J-S, Kang I-S. Symmetric and antisymmetric mass exchanges between the equatorial and off-equatorial Pacific associated with ENSO. J. Geophys. Res., 2003, 108 (C8), 3284, doi: 10. 1029/2002JC001671
[22]
Wang B, An S-I. A mechanism for decadal changes of ENSO behavior: Roles of background wind changes. Climate Dynamics, 2002, 18: 475-486
[23]
Bjerknes J. Atmospheric teleconnections from the equatorial Pacific. Mon. Wea. Rev. , 1969, 97:163-172
[24]
The Special Issue of Journal of Geophysical Research. 1998, 103 (C7): 14167-14510
[25]
Chang P, Yamagata T, Schopf P, et al. Climate fluctuations of tropical coupled systems-The role of ocean dynamics. J. Climate, 2005, 19:5122-5136
[26]
Graham N E. Decadal-scale climate variability in the tropical and North Pacific during 1970s and 1980s. Climate Dyn. , 1994, 10: 135-162
[27]
Zhang Xuehong, Liang Xinzhong. A numerical world ocean general circulation model. Adv. Atrnos. Sci., 1989, 6 (1): 43-61
[28]
Zhang Xuehong, Bao Ning, Wang Wanqiu. Numerical simulation of seasonal cycle of world oceanic general circulation. The Proceedings of The Sixth Japan and East China Sea Study Workshop (JECSS-Ⅵ), Fukuoda, Japan, April 22- 27, 1991
[29]
Roeske F. An atlas of surface fluxes based on the ECMWF reanalysis-A climatological dataset to force global ocean general circulation models. Technical Report 323, MaxPlanck-Insititut for Meteorologie, Hamburg, 2001
Wang B. Interdecadal changes in El Nino onset in the last four decades. J. Climate, 1995, 8:267-285
[35]
Wang B, An S-I. Why the properties of El Nino changed during the late 1970s. Geophys. Res. Lett. , 2001, 28: 3709- 3712
[36]
An, S-I, Yoo-Geun Ham, Kug J-S, et al. El Nino - La Nina asymmetry in the coupled model intercomparison project simulations. J. Climate, 2005, 18:2617-2627