Citation: | SHU Qi, QIAO Fangli, SONG Zhenya, YIN Xunqiang. A comparison of two global ocean-ice coupled models with different horizontal resolutions[J]. Acta Oceanologica Sinica, 2013, 32(8): 1-11. doi: 10.1007/s13131-013-0335-z |
Amante C, Eakins BW. 2009. ETOPO1 1 Arc-minute Global Relief Model: Procedures, Data sources and Analysis. Boulder, Colorado: US Dept of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, National Geophysical Data Center, Marine Geology and Geophysics Division
|
Cavalieri D J, Parkinson C L, Gloersen P, et al. 1996. Sea ice concentrations from Nimbus-7 SMMR and DMSP SSM/I passive microwave data, 1979-2007. Boulder, Colorado: National Snow and Ice Data Center. Digitalmedia. Updated 2008
|
Chassignet E P, Garraffo Z D. 2001. Viscosity Parameterization and the Gulf Streamseparation. In: Muller P,HendersonD, eds. Aha Huliko'a HawaiianWinterWorkshop. Hawaii: University of Hawaii, 37-41
|
Dengg J, Beckmann A, Gerdes R. 1996. The gulf stream separation problem. The warmwatersphere of the North Atlantic Ocean. Berlin: Gebruder Borntraeger, 253-290
|
ETOPO5. 1986. Relief map of the earth's surface. EOS, 67: 121
|
Ezer T. 2000. On the seasonal mixed layer simulated by a basin-scale oceanmodel and theMellor-Yamada turbulence scheme. J Geophys Res, 105 (C7): 16843-16855
|
Griffies S M, Biastoch A, Böning C, et al. 2009. Coordinated ocean-ice reference experiments (COREs). OceanModelling, 26(1-2): 1-46
|
Griffies S M, Hallberg R W. 2000. Biharmonic friction with a Smagorinsky-like viscosity for use in large-scale eddypermitting ocean models. Monthly Weather Review, 128(8): 2935-2946
|
Griffies S M, Harrison M J, Pacanowski R C, et al. 2004. A technical guide toMOM4. GFDL Ocean Group Tech Rep, 5: 371
|
Huang C J, Qiao F, Song Z, et al. 2011. Improving simulations of the upper ocean by inclusion of surfacewaves in theMellor-Yamada turbulence scheme. J Geophys Res, 116: C01007
|
Hurlburt H E, Metzger E J, Sprintall J, et al. 2011. Circulation in the Philippine Archipelago simulated by 1/12° and 1/25° globalHYCOMand EAS NCOM. Oceanography, 24(1): 28-47
|
Kantha L H, Clayson C A. 1994. An improved mixed layer model for geophysical applications. J Geophys Res, 99(C12): 25235-25266
|
LargeW, Doney S. 1994. Oceanic vertical mixing: a review and amodel. Reviews of Geophysics, 32: 363-403
|
Levitus S, Boyer T. 1994. NOAA Atlas NESDIS 4, World Ocean Atlas 1994, Vol. 4: Temperature. Nat Environ Satellite, Data, and Inf Serv, Nat Oceanic and Atmos Admin, US Dep of Comm Washington, DC
|
Lu J, Qiao F, Wei Z, et al. 2008. Study on distribution of mixed layer depth in the world ocean in summer. Advances in Marine Science (in Chinese), 26(2): 145-155
|
Maltrud M E, McClean J L. 2005. An eddy resolving global 1/10 ocean simulation. OceanModelling, 8(1-2): 31-54
|
Martin P J. 1985. Simulation of theMixed Layer at OWS November and PapaWith SeveralModels. J Geophys Res, 90(C1): 903-916
|
Masumoto Y, Sasaki H, Kagimoto T, et al. 2004. A fifty-year eddyresolving simulation of the world ocean: preliminary outcomes of OFES (OGCM for the earth simulator). J Earth Simulator, 1: 35-56
|
McAvaney B J, Covey C, Joussaume S, et al. 2001. Model evalution. Climate Change 2001: The Scientific Basis. Contribution of Working Group I to the Third Assessment Repor. Cambridge: Cambridge University Press, 881
|
Meier W, Fetterer F, Knowles K, et al. 2006. Sea ice concentrations fromNimbus-7 SMMR andDMSP SSM/I passivemicrowave data, 2008. Boulder, Colorado USA: National Snow and Ice Data
|
Center. Digitalmedia. Updated quarterly Murray R J. 1996. Explicit generation of orthogonal grids for ocean models. Journal of Computational Physics, 126: 251-273
|
Qiao F, Yang Y, Xia C, et al. 2008. The role of surface waves in the ocean mixed layer. Acta Oceanologica Sinica, 27(3): 30-37
|
Qiao F, Yuan Y, Ezer T, et al. 2010. A three-dimensional surface waveocean circulation coupled model and its initial testing. Ocean Dynamics, 60(5): 1339-1355
|
Qiao F, Yuan Y, Yang Y, et al. 2004. Wave induced mixing in the upper ocean: distribution and application to a global ocean circulation model. Geophys Res Lett, 31: L11303, doi: 10.1029/2004GL019824
|
Reynolds R W, Smith T M, Liu C, et al. 2007. Daily high-resolutionblended analyses for sea surface temperature. Journal of Climate, 22: 5473-5496
|
Roeske F. 2001. An Atlas of surface fluxes based on the ECMWF reanalysis: a climatological dataset to force global ocean general circulation models. Hamburg: Max-Planck-Institut fuer Meteorologie, 270
|
Shu Q, Qiao F, Song Z, et al. 2011. Improvement of MOM4 by including surface wave-induced vertical mixing. OceanModelling, 40: 42-51
|
Smith R D,Maltrud ME, Bryan F O, et al. 2000. Numerical simulation of the North Atlantic Ocean at 1/10. J Phs Oceanogr, 30: 1532- 1561
|
Wang Y, Qiao F, Fang G, et al. 2010. Application of wave-induced vertical mixing to the K profile parameterization scheme. J Geophys Res, 115: C09014, doi: 10.1029/2009JC005856
|
Winton M. 2000. A reformulated three-layer sea ice model. Journal of Atmospheric and Oceanic Technology, 17(4): 525-531
|
Xia C, Qiao F, Yang Y, et al. 2006. Three-dimensional structure of the summertime circulation in the Yellow Sea from a wave-tidecirculation coupled model. J Geophys Res, 111: C11S03, doi: 10.1029/2005JC003218
|
Yang Y, Qiao F, Zhao W, et al. 2005. MASNUM ocean wave model in spherical coordinate and its application. Acta Oceanologica Sinica (in Chinese), 27: 1-7
|