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A dipole wind curl pattern induced by Taiwan Island and its effect on upper stratification in the northeastern South China Sea 被引量:2

A dipole wind curl pattern induced by Taiwan Island and its effect on upper stratification in the northeastern South China Sea
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摘要 Using hydrographic data sampled during four successive late summer-early autumn cruises in 2004-2007, vertical stratification along transects in the lee of Taiwan Island was analyzed to investigate upper ocean responses to orographically induced dipole wind stress curl (WSC). Results indicate that mixed-layer depth (MLD) and its relationship with thermocline depth varied under different local wind forcings. Average MLD along the transects from the 2004 to 2007 cruises were 18.5,30.7,39.2 and 24.5m, respectively. The MLD along the transects deepened remarkably and resulted in thermocline ventilation in 2005 and 2006, whereas ventilation did not occur in 2004 and 2007. Estimates indicate that frictional wind speed was the major factor in MLD variations. To a large degree, the combined effects of frictional wind speed and Ekman pumping are responsible for the spatial pattern of MLD during the cruises. Using hydrographic data sampled during four successive late summer-early autumn cruises in 2004-2007, vertical stratification along transects in the lee of Taiwan Island was analyzed to investigate upper ocean responses to orographically induced dipole wind stress curl (WSC). Results indicate that mixed-layer depth (MLD) and its relationship with thermocline depth varied under different local wind forcings. Average MLD along the transects from the 2004 to 2007 cruises were 18.5, 30.7, 39.2 and 24.5 m, respectively. The MLD along the transects deepened remarkably and resulted in thermocline ventilation in 2005 and 2006, whereas ventilation did not occur in 2004 and 2007. Estimates indicate that frictional wind speed was the major factor in MLD variations. To a large degree, the combined effects of frictional wind speed and Ekman pumping are responsible for the spatial pattern of MLD during the cruises.
出处 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2012年第6期944-952,共9页 中国海洋湖沼学报(英文版)
基金 Supported by the Knowledge Innovation Program of Chinese Academy of Sciences (No. KZCX2-YW-Q11-02) the National Basic Research Program of China (973 Program) (No. 2011CB403503) the National Natural Science Foundation of China (Nos. 40876009,41176028)
关键词 偶极子 台湾岛 南海东北部 诱导 EKMAN抽吸 卷曲 中国 摩擦风速 Taiwan Island dipole wind stress curl mixed layer depth thermocline
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  • 1Du Y. 2002. Seasonal dynamics of the mixed layer and thermocline in the South China Sea, Ph.D. dissertation, Ocean Univ. of China, Qingdao. 240p.
  • 2Fairall C W, Bradley E, Rogers D P, Edison P J B, Young G S. 1996. Bulk parameterization of the air-sea fluxes for tropical ocean-global atmosphere coupled-ocean response experiment. Geophys. Res. Lett., 101:3 747-3 764.
  • 3Fang ', Fang G, Siai P, Huang Q, Xie Q. 2002. Seasonal structures of upper layer circulation in the southern South China Sea from in situ observations. J. Geophys. Res., 107:3 202, http://dx.doi.org/10.1029/2002JC001343.
  • 4Jia Y, Liu Q, Liu W. 2005. Primary study of the mechanism of eddy shedding from the Kuroshio Bend in Luzon Strait. J. Oceanogr., 61:1 017-1 027.
  • 5Kara A B, R0chford P A, Hurlburt H E. 2000. Mixed layer depth variability and barrier layer formation over the North Pacific Ocean. J. Geophys. Res., 105(C7): 16 783-16 802.
  • 6Kraus E B, Turner J S. 1967. A one-dimensional model of the seasonal therrnocline. Part II: The general theory and its consequences. Tellus, 19: 98-105.
  • 7Liu Q, Jia Y, Liu P, Wang Q. 2001. Seasonal and interseasonalthermocline variability in the central South China Sea. Geophys. Res. Lett., 28(23): 2 267-4 470.
  • 8Liu W T. 20()2. Progress in scatter'ometer application. J. Oceanogr., 58: 121-136, http://dx.doi.org/10.1023/A:1015832919110.
  • 9Liu W T, Xie X. 1999, Space-based observations of the seasonal changes of South Asian monsoons and oceanic response. Geophys. Res. Lett., 26:1 473-1 476.
  • 10Luis A-J, Kawamura H. 2004. Air-sea interaction, coastal circulation and primary production in the eastern Arabian Sea: a review, J. Oceanogr., 60: 205-218.

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