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3-D BAROCLINIC NUMERICAL SIMULATION OF THE SOUTH CHINA SEA I. UPPER CIRCULATION
引用本文:蔡树群 甘子钧 刘秦玉. 3-D BAROCLINIC NUMERICAL SIMULATION OF THE SOUTH CHINA SEA I. UPPER CIRCULATION[J]. 中国海洋湖沼学报, 2001, 19(3): 208-216. DOI: 10.1007/BF02850656
作者姓名:蔡树群 甘子钧 刘秦玉
作者单位:[1]SouthChinaSeaInstituteofOceanology,ChineseAcademyofSciences,Guangzhou510301,China [3]QingdaoOceanUniversity,Qingdao266003,China
基金项目:Project4 963 62 3 0supportedbyNSFCandsupportedbyChineseAcademyofSciences (GrantKZ951 B1 4 0 8) alsosupportedbythemajorstateb
摘    要:A three-dimensional baroclinic shelf sea model was employed to simulate the seasonal characteristics of the South China Sea (SCS) upper circulation. The results showed that: in summer, an anticyclonic eddy, after its formation between the Bashi Channel and Dongsha Islands in the northeastern SCS, moves southwestward until it disperses slowly. There exists a northward western boundary current along the east shore of the Indo-China Peninsula in the western SCS and an anticyclonic gyre in the southern SCS. But at the end of summer and beginning of autumn, a weak local cyclonic eddy forms in the Nansha Trough, then grows slowly and moves westward till it becomes a cyclonic gyre in the southern SCS in autumn. At the beginning of winter, there exists a cyclonic gyre in the northern and southern SCS, and there is a southward western boundary current along the east shore of the Indo-China Peninsula. But at the end of winter, an anticyclonic eddy grows and moves toward the western boundary after forming in the Nansha Trough. The eddy‘s movement induces a new opposite sign eddy on its eastern side, while the strength of the southward western boundary current gets weakened. This phenomenon continues till spring and causes eddies in the southern SCS.

关 键 词:数字模拟 三维 海洋模型 周期性 特征 中国南海 气旋 气流
收稿时间:1999-11-23
修稿时间:2000-07-11

3-D baroclinic numerical simulation of the South China Sea I. Upper circulation
Cai Shu-qun,Gan Zi-jun,Su Ji-lan,Liu Qin-yu. 3-D baroclinic numerical simulation of the South China Sea I. Upper circulation[J]. Chinese Journal of Oceanology and Limnology, 2001, 19(3): 208-216. DOI: 10.1007/BF02850656
Authors:Cai Shu-qun  Gan Zi-jun  Su Ji-lan  Liu Qin-yu
Affiliation:(1) South China Sea Institute of Oceanology, Chinese Academy of Sciences, 510301 Guangzhou, China;(2) The Second Institute of SOA, 310012 Hangzhou, China;(3) Qingdao Ocean University, 266003 Qingdao, China
Abstract:A three dimensional baroclinic shelf sea model was employed to simulate the seasonal characteristics of the South China Sea (SCS) upper circulation. The results showed that: in summer, an anticyclonic eddy, after its formation between the Bashi Channel and Dongsha Islands in the northeastern SCS, moves southwestward until it disperses slowly. There exists a northward western boundary current along the east shore of the Indo China Peninsula in the western SCS and an anticyclonic gyre in the southern SCS. But at the end of summer and beginning of autumn, a weak local cyclonic eddy forms in the Nansha Trough, then grows slowly and moves westward till it becomes a cyclonic gyre in the southern SCS in autumn. At the beginning of winter, there exists a cyclonic gyre in the northern and southern SCS, and there is a southward western boundary current along the east shore of the Indo China Peninsula. But at the end of winter, an anticyclonic eddy grows and moves toward the western boundary after forming in the Nansha Trough. The eddy's movement induces a new opposite sign eddy on its eastern side, while the strength of the southward western boundary current gets weakened. This phenomenon continues till spring and causes eddies in the southern SCS.
Keywords:numerical simulation   model   South China Sea   circulation   eddy   monsoon
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