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Sea surface height and transport stream function of the South China Sea from a variable-grid global ocean circulation model 被引量:12

Sea surface height and transport stream function of the South China Sea from a variable-grid global ocean circulation model
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摘要 A fine-grid model (1/6) covering the South China Sea (SCS), East China Sea and Ja-pan/East Sea, which is embedded into a coarse-grid (3) global model, was established to study the SCS circulation. In the present paper, we report the model-produced monthly and annual mean transport stream functions and sea surface heights(SSH) and their anomalies of the SCS. Com-parison to the TOPEX/Poseidon data shows that the model-produced monthly sea surface height anomalies (SSHA) are in good agreement with altimeter measurements. Based on the results, the circulation of the SCS, especially the upper layer circulation, is discussed. In the surface layer, the western Philippine Sea water intrudes into the SCS through the Luzon Strait in autumn, winter and spring, but not in summer. However, as far as the whole water column is concerned, the water in-trudes into the SCS through the Luzon Strait all the year round. This indicates that in summer the water still intrudes into the SCS in the subsurface and intermediate layers. The area near the northern continental slope of the SCS is dominated by a cyclonic circulation all the year round. The SCS Southern Anticyclonic Gyre, SE Vietnam Off-Shore Current in summertime and SCS South-ern Cyclonic Gyre in wintertime are reproduced reasonably. The difference between the monthly averaged SSH and SSHA is significant, indicating the importance of the mean SSH in the SCS circulation. A fine-grid model (1/6°) covering the South China Sea (SCS), East China Sea and Japan/East Sea, which is embedded into a coarse-grid (3°) global model, was established to study the SCS circulation. In the present paper, we report the model-produced monthly and annual mean transport stream functions and sea surface heights(SSH) and their anomalies of the SCS. Comparison to the TOPEX/Poseidon data shows that the model-produced monthly sea surface height anomalies (SSHA) are in good agreement with altimeter measurements. Based on the results, the circulation of the SCS, especially the upper layer circulation, is discussed. In the surface layer, the western Philippine Sea water intrudes into the SCS through the Luzon Strait in autumn, winter and spring, but not in summer. However, as far as the whole water column is concerned, the water intrudes into the SCS through the Luzon Strait all the year round. This indicates that in summer the water still intrudes into the SCS in the subsurface and intermediate layers. The area near the northern continental slope of the SCS is dominated by a cyclonic circulation all the year round. The SCS Southern Anticyclonic Gyre, SE Vietnam Off-Shore Current in summertime and SCS Southern Cyclonic Gyre in wintertime are reproduced reasonably. The difference between the monthly averaged SSH and SSHA is significant, indicating the importance of the mean SSH in the SCS circulation.
出处 《Science China Earth Sciences》 SCIE EI CAS 2003年第2期139-148,共10页 中国科学(地球科学英文版)
基金 the China Major State Basic Research Program (Grant No. G1999043808) the Youth Fund of National 863 Project (Grant No. 2002AA639350) the National Natural Science Foundation of China (Grant No. 49876010) and the Innovation Program of the Chinese Aca
关键词 South China Sea SEA SURFACE height SEA SURFACE HEIGHT anomaly transport stream function numerical model. South China Sea sea surface height sea surface height anomaly transport stream function numerical model
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参考文献12

  • 1FANG Guohong,WEI Zexun,FANG Yue,WANG Kai,Choi Byungho.Mean sea surface heights of the South and East China Seas from ocean circulation model and geodetic leveling[J].Chinese Science Bulletin,2002,47(4):326-329. 被引量:3
  • 2Fang Yue,Fang Guo-hong,Yu Ke-jun.ADI barotropic ocean model for simulation of Kuroshio intrusion into China southeastern waters[J].Chinese Journal of Oceanology and Limnology.1996(4)
  • 3Hellerman,S.,Rosenstein,M.Normal monthly wind stress over the world’s oceans with error estimates[].Journal of Physical Oceanography.1983
  • 4Levitus,S,Boyer,TP. World ocean atlas 1994 . 1994
  • 5QU T.Upper layer circulation in the South China Sea[].Journal of Physical Oceanography.2000
  • 6Bryan,K.Anumer ica lme thodf or the studyofthec ir cul ation oftheworldocean,J[].Computer in Physics.1969
  • 7Fang,G,Fang,W,Fang,Y. et al.A survey of studies on the South China Sea upper ocean circulation[].Acta OceanogrTaiwan.1998
  • 8Hu,J,Kawamura,H,Hong,H,Qi,Y.Arevi ew ont hecurren ts intheSouthChinaSea:Season alcirculation,SouthChinaSeaWarmCurre ntandKurosh iointrusion[].Journal of Oceanography.2000
  • 9Su,J. L.Are vi ewofcircula tiondyna mi cso fthecoa staloc eansnearChina[].ActaOceanolSin.2001
  • 10Wang,D.X,Wang,W.Q,Sh i,P.etal.Establi shm entandadju st mentofmonsoon- drivencircu la tionintheSouthChinaSea[].S ciencein ChinaSerD.2003

二级参考文献2

  • 1Chau-Ron Wu,Ping-Tung Shaw,Shenn-Yu Chao.Seasonal and interannual variations in the velocity field of the South China Sea[J].Journal of Oceanography.1998(4)
  • 2Fang,G,Zhao,B.A note on the main forcing of the northeast-ward flowing current off the southeast China coast, Progr[].Oceanology.1988

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