Wang Huizan, Liu Quanhong, Yan Hengqian, Song Bo, Zhang Weimin. The interactions between surface Kuroshio transport and the eddy field east of Taiwan using satellite altimeter data[J]. Acta Oceanologica Sinica, 2019, 38(4): 116-125. doi: 10.1007/s13131-019-1417-3
Citation: Wang Huizan, Liu Quanhong, Yan Hengqian, Song Bo, Zhang Weimin. The interactions between surface Kuroshio transport and the eddy field east of Taiwan using satellite altimeter data[J]. Acta Oceanologica Sinica, 2019, 38(4): 116-125. doi: 10.1007/s13131-019-1417-3

The interactions between surface Kuroshio transport and the eddy field east of Taiwan using satellite altimeter data

doi: 10.1007/s13131-019-1417-3
  • Received Date: 2018-02-08
  • Based on the daily sea surface height and absolute geostrophic velocity data from 1993 to 2015 provided by the AVISO Center of French Space Agency, the surface Kuroshio transport east of Taiwan and its adjacent eddy field (sea surface height anomaly) were analyzed. Four main periods of the surface Kuroshio transport and eddy field east of Taiwan were obtained, which were used to reveal their interactions. The main conclusions are as follows:(1) Based on the wavelet analysis, the surface Kuroshio transport east of Taiwan and its nearby eddy field showed significant seasonal, annual and interannual periods. In addition to the obvious periods of 182 days (0.5 year) and 365 days (1 year), there were also more obvious periods of about 860 days (2.35 years) and 2 472 days (6.8 years) for the surface Kuroshio transport. There were also four more obvious periods corresponding to the eddy field of 200 days (0.55 year), 374 days (1 year), 889 days (2.43 years) and 2 374 days (6.5 years), although there were latitudinal variations. (2) Based on both the correlation and causal analysis, the correlation between the surface Kuroshio transport and the nearby eddy field over the above four periods was analyzed, and different Kuroshio-eddy interactions, with period and latitudinal variability, were revealed.
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  • Ambe D, Imawaki S, Uchida H, et al. 2004. Estimating the kuroshio axis South of Japan using combination of satellite altimetry and drifting buoys. Journal of Oceanography, 60(2):375-382, doi: 10.1023/B:JOCE.0000038343.31468.fe
    Chang Yulin, Miyazawa Y, Guo Xinyu. 2015. Effects of the STCC eddies on the Kuroshio based on the 20-year JCOPE2 reanalysis results. Progress in Oceanography, 135:64-76, doi: 10.1016/j.pocean.2015.04.006
    Chang Y L, Oey L Y. 2011. Interannual and seasonal variations of Kuroshio transport east of Taiwan inferred from 29 years of tide-gauge data. Geophysical Research Letters, 38(8):L08603
    Chelton D B, Schlax M G, Samelson R M. 2011. Global observations of nonlinear mesoscale eddies. Progress in Oceanography, 91(2):167-216, doi: 10.1016/j.pocean.2011.01.002
    Cheng Y H, Ho C R, Zheng Quanan, et al. 2017. Statistical features of eddies approaching the Kuroshio east of Taiwan Island and Luzon Island. Journal of Oceanography, 73(4):427-438, doi: 10.1007/s10872-017-0411-7
    Delman A S, Mcclean J L, Sprintall J, et al. 2015. Effects of eddy vorticity forcing on the mean state of the Kuroshio extension. Journal of Physical Oceanography, 45(5):1356-1375, doi: 10.1175/JPO-D-13-0259.1
    Gawarkiewicz G, Jan S, Lermusiaux P F J, et al. 2011. Circulation and intrusions northeast of Taiwan:Chasing and predicting uncertainty in the cold dome. Oceanography, 24(4):110-121, doi: 10.5670/oceanog
    Geng Wu, Xie Qiang, Chen Gengxin, et al. 2016. Numerical study on the eddy-mean flow interaction between a cyclonic eddy and Kuroshio. Journal of Oceanography, 72(5):727-745, doi: 10.1007/s10872-016-0366-0
    Geng Wu, Xie Qiang, Chen Gengxin, et al. 2018. A three-dimensional modeling study on eddy-mean flow interaction between a Gaussian-type anticyclonic eddy and Kuroshio. Journal of Oceanography, 74(1):23-37, doi: 10.1007/s10872-017-0435-z
    Hsin Y C, Chiang T L, Wu C R. 2011. Fluctuations of the thermal fronts off northeastern Taiwan. Journal of Geophysical Research:Oceans, 116(C10):C10005, doi: 10.1029/2011JC007066
    Hsin Y C, Qiu Bo, Chiang T L, et al. 2013. Seasonal to interannual variations in the intensity and central position of the surface Kuroshio east of Taiwan. Journal of Geophysical Research:Oceans, 118(9):4305-4316, doi: 10.1002/jgrc.20323
    Hsu P C, Lin C C, Huang S J, et al. 2016. Effects of cold eddy on Kuroshio Meander and its surface properties, east of Taiwan. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 9(11):5055-5063, doi: 10.1109/JSTARS.2016.2524698
    Hwang C, Wu C R, Kao R. 2004. TOPEX/Poseidon observations of mesoscale eddies over the Subtropical countercurrent:kinematic characteristics of an anticyclonic eddy and a cyclonic eddy. Journal of Geophysical Research:Oceans, 109(C8):C08013
    Ichikawa K, Tokeshi R, Kashima M, et al. 2008. Kuroshio variations in the upstream region as seen by HF radar and satellite altimetry data. International Journal of Remote Sensing, 29(21):6417-6426, doi: 10.1080/01431160802175454
    Jan S, Yang Y J, Wang J, et al. 2015. Large variability of the Kuroshio at 23.75°N east of Taiwan. Journal of Geophysical Research:Oceans, 120(3):1825-1840, doi: 10.1002/2014JC010614
    Johns W E, Lee T N, Zhang Dongxiao, et al. 2001. The kuroshio east of Taiwan:moored transport observations from the WOCE PCM-1 array. Journal of Physical Oceanography, 31(4):1031-1053, doi: 10.1175/1520-0485(2001)031<1031:TKEOTM>2.0.CO;2
    Kuo Y C, Chern C S, Zheng Zhewen. 2017. Numerical study on the interactions between the Kuroshio current in the Luzon Strait and a mesoscale eddy. Ocean Dynamics, 67(3-4):369-381
    Lee I H, Dong S K, Wang Yuhuai, et al. 2013. The mesoscale eddies and Kuroshio transport in the western North Pacific east of Taiwan from 8-year (2003-2010) model reanalysis. Ocean Dynamics, 63(9-10):1027-1040, doi: 10.1007/s10236-013-0643-z
    Liang X S. 2014. Unraveling the cause-effect relation between time series. Physical Review E, 90(5):052150, doi: 10.1103/PhysRevE.90.052150
    Liang X S. 2015. Normalizing the causality between time series. Physical Review E, 92(2):022126
    Lien R C, Ma B, Cheng Y H, et al. 2014. Modulation of Kuroshio transport by mesoscale eddies at the Luzon Strait entrance. Journal of Geophysical Research:Oceans, 119(4):2129-2142, doi: 10.1002/2013JC009548
    Liu Yu, Dong Changming, Liu Xiaohui, et al. 2017. Antisymmetry of oceanic eddies across the Kuroshio over a shelfbreak. Scientific Reports, 7:6761, doi: 10.1038/s41598-017-07059-1
    Ma Libin, Wang Qiang. 2014. Interannual variations in energy conversion and interaction between the mesoscale eddy field and mean flow in the Kuroshio south of Japan. Chinese Journal of Oceanology and Limnology, 32(1):210-222, doi: 10.1007/s00343-014-3036-3
    Ma Xiaohui, Jing Zhao, Chang Ping, et al. 2016. Western boundary currents regulated by interaction between ocean eddies and the atmosphere. Nature, 535(7613):533-537, doi: 10.1038/nature18640
    Miyazawa Y, Guo Xinyu, Yamagata T. 2004. Roles of mesoscale eddies in the Kuroshio paths. Journal of Physical Oceanography, 34(10):2203-2222, doi: 10.1175/1520-0485(2004)034<2203:ROMEIT>2.0.CO;2
    Nan Feng, Xue Huijie, Chai Fei, et al. 2011b. Identification of different types of Kuroshio intrusion into the South China Sea. Ocean Dynamics, 61(9):1291-1304, doi: 10.1007/s10236-011-0426-3
    Nan Feng, Xue Huijie, Xiu Peng, et al. 2011a. Oceanic eddy formation and propagation southwest of Taiwan. Journal of Geophysical Research:Oceans, 116(C12):C12045, doi: 10.1029/2011JC007386
    Qiu Bo, Chen Shuming. 2010a. Interannual variability of the North Pacific subtropical countercurrent and its associated mesoscale eddy field. Journal of Physical Oceanography, 40(1):213-225, doi: 10.1175/2009JPO4285.1
    Qiu Bo, Chen Shuming. 2010b. Eddy-mean flow interaction in the decadally modulating Kuroshio Extension system. Deep Sea Research Part Ⅱ:Topical Studies in Oceanography, 57(13-14):1098-1110
    Torrence C, Compo G P. 1998. A practical guide to wavelet analysis. Bulletin of the American Meteorological Society, 79(1):61-78, doi: 10.1175/1520-0477(1998)079<0061:APGTWA>2.0.CO;2
    Tsai C, Andres M, Jan S, et al. 2015. Eddy-Kuroshio interaction processes revealed by mooring observations off Taiwan and Luzon. Geophysical Research Letters, 42(19):8098-8105, doi: 10.1002/2015GL065814
    Wang Guihua, Su Jilan, Chu P C. 2003. Mesoscale eddies in the South China Sea observed with altimeter data. Geophysical Research Letters, 30(21):2121, doi: 10.1029/2003GL018532
    Wang Huizan, Wei Linjin, Zhang Quanli, et al. 2018. Identification of the Kuroshio Path East of Taiwan and its Variation. Oceanologia et Limnologia Sinica, 49(2):271-279
    Waseda T, Mitsudera H, Taguchi B, et al. 2002. On the eddy-Kuroshio interaction:Evolution of the mesoscale eddy. Journal of Geophysical Research:Oceans, 107(C8):3088, doi: 10.1029/2000JC000756
    Yan Xiaomei, Zhu Xiaohua, Pang Chongguang, et al. 2016. Effects of mesoscale eddies on the volume transport and branch pattern of the Kuroshio east of Taiwan. Journal of Geophysical Research:Oceans, 121(10):7683-7700, doi: 10.1002/2016JC012038
    Yang Y, Liu C T, Hu J H, et al. 1999. Taiwan current (Kuroshio) and impinging eddies. Journal of Oceanography, 55(5):609-617, doi: 10.1023/A:1007892819134
    Yang Xiaodan, Mao Xinyan, Jiang Wensheng. 2014. Study of the sea surface height key region which reveals the variability of the Kuroshio volume transport east of Taiwan. Transactions of Oceanology and Limnology (in Chinese), 37(1):1-6
    Yin Yuqi, Lin Xiaopei, He Ruoying, et al. 2017. Impact of mesoscale eddies on Kuroshio intrusion variability northeast of Taiwan. Journal of Geophysical Research:Oceans, 122(4):3021-3040, doi: 10.1002/2016JC012263
    Yu Dandan, Zhang Ren, Hong Mei, et al. 2007. Correlation analysis between the west pacific subtropical high and the East Asian summer monsoon system based on cross wavelet and wavelet coherence. Journal of Nanjing Institute of Meteorology (in Chinese), 30(6):755-769
    Zhang Dongxiao, Lee T N, Johns W E, et al. 2001. The Kuroshio east of Taiwan:Modes of variability and relationship to interior ocean mesoscale eddies. Journal of Physical Oceanography, 31(4):1054-1074, doi: 10.1175/1520-0485(2001)031<1054:TKEOTM>2.0.CO;2
    Zhang Zhiwei, Zhao Wei, Qiu Bo, et al. 2017. Anticyclonic Eddy Sheddings from Kuroshio loop and the accompanying cyclonic eddy in the northeastern South China Sea. Journal of Physical Oceanography, 47(6):1243-1259, doi: 10.1175/JPO-D-16-0185.1
    Zheng Quanan, Tai C K, Hu Jiangyu, et al. 2011. Satellite altimeter observations of nonlinear Rossby eddy-Kuroshio interaction at the Luzon Strait. Journal of Oceanography, 67:365-376, doi: 10.1007/s10872-011-0035-2
    Zheng Quanan, Xie Lingling, Zheng Zhiwen, et al. 2017. Progress in research of mesoscale eddies in the South China Sea. Advances in Marine Science (in Chinese), 35(2):131-158
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