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Surface inflow into the South China Sea through the Luzon Strait in winter

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【作者】 郭景松陈显尧Janet SPRINTALL郭炳火乔方利袁业立

【Author】 GUO Jingsong 1, 2, CHEN Xianyao 2, **, Janet SPRINTALL3, GUO Binghuo 2, QIAO Fangli 2, YUAN Yeli 2 1 Physical and Environmental Oceanography, Ocean University of China, Qingdao 266100, China 2 Laboratory of Marine Science and Numerical Modeling, The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China 3 Scripps Institution of Oceanography, UCSD, California, United States

【机构】 Physical and Environmental Oceanography, Ocean University of ChinaLaboratory of Marine Science and Numerical Modeling, The First Institute of Oceanography, State Oceanic AdministrationScripps Institution of Oceanography, UCSD, California, United States

【摘要】 We studied the driving force of the Kuroshio intrusion into the South China Sea (SCS) during the winter monsoon, using satellite-tracked drifters entering the Luzon Strait (LS) through the Balintany and Babuyan Channels from the Philippine Sea. Most drifters passing through the Babuyan Channel in winter entered the interior SCS without a significant change in velocity. However, half of the drifters passing through the Balintany Channel entered the SCS at ~30 cm/s, which was faster than when they entered the LS. The other half continued moving northwestward into the Kuroshio and returned to the North Pacific. Quantitative analyses, using surface climatological wind and sea surface height anomaly (SSHa) data explained both the difference in velocity of drifters between the two channels and their acceleration through the Balintany Channel. The results suggest that the positive meridional gradient of sea surface height in the Luzon Strait, caused by the pileup of seawater driven by the Northeast monsoon, as well as Ekman flow, contribute to the Kuroshio intrusion into the SCS through the Babuyan and Balintany Channels. The former may be the main driving force.

【Abstract】 We studied the driving force of the Kuroshio intrusion into the South China Sea (SCS) during the winter monsoon, using satellite-tracked drifters entering the Luzon Strait (LS) through the Balintany and Babuyan Channels from the Philippine Sea. Most drifters passing through the Babuyan Channel in winter entered the interior SCS without a significant change in velocity. However, half of the drifters passing through the Balintany Channel entered the SCS at ~30 cm/s, which was faster than when they entered the LS. The other half continued moving northwestward into the Kuroshio and returned to the North Pacific. Quantitative analyses, using surface climatological wind and sea surface height anomaly (SSHa) data explained both the difference in velocity of drifters between the two channels and their acceleration through the Balintany Channel. The results suggest that the positive meridional gradient of sea surface height in the Luzon Strait, caused by the pileup of seawater driven by the Northeast monsoon, as well as Ekman flow, contribute to the Kuroshio intrusion into the SCS through the Babuyan and Balintany Channels. The former may be the main driving force.

【基金】 Supported by the National Basic Research Program of China (973 Program) (Nos. 2007CB816002, 2005CB422303);the National Natural Science Foundation of China (Nos. 40776018, 41176029)
  • 【文献出处】 Chinese Journal of Oceanology and Limnology ,中国海洋湖沼学报(英文版) , 编辑部邮箱 ,2012年01期
  • 【分类号】P731.2
  • 【被引频次】5
  • 【下载频次】78
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