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http://dx.doi.org/10.7850/jkso.2019.24.2.208

Estimation of Mean Surface Current and Current Variability in the East Sea using Surface Drifter Data from 1991 to 2017  

PARK, JU-EUN (Department of Oceanography, Chonnam National University)
KIM, SOO-YUN (Department of Oceanography, Chonnam National University)
CHOI, BYOUNG-JU (Department of Oceanography, Chonnam National University)
BYUN, DO-SEONG (Ocean Research Division, Korea Hydrographic and Oceanographic Agency)
Publication Information
The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY / v.24, no.2, 2019 , pp. 208-225 More about this Journal
Abstract
To understand the mean surface circulation and surface currents in the East Sea, trajectories of surface drifters passed through the East Sea from 1991 to 2017 were analyzed. By analyzing the surface drifter trajectory data, the main paths of surface ocean currents were grouped and the variation in each main current path was investigated. The East Korea Warm Current (EKWC) heading northward separates from the coast at $36{\sim}38^{\circ}N$ and flows to the northeast until $131^{\circ}E$. In the middle (from $131^{\circ}E$ to $137^{\circ}E$) of the East Sea, the average latitude of the currents flowing eastward ranges from 36 to $40^{\circ}N$ and the currents meander with large amplitude. When the average latitude of the surface drifter paths was in the north (south) of $37.5^{\circ}N$, the meandering amplitude was about 50 (100) km. The most frequent route of surface drifters in the middle of the East Sea was the path along $37.5-38.5^{\circ}N$. The surface drifters, which were deployed off the coast of Vladivostok in the north of the East Sea, moved to the southwest along the coast and were separated from the coast to flow southeastward along the cyclonic circulation around the Japan Basin. And, then, the drifters moved to the east along $39-40^{\circ}N$. The mean surface current vector and mean speed were calculated in each lattice with $0.25^{\circ}$ grid spacing using the velocity data of surface drifters which passed through each lattice. The current variance ellipses were calculated with $0.5^{\circ}$ grid spacing. Because the path of the EKWC changes every year in the western part of the Ulleung Basin and the current paths in the Yamato Basin keep changing with many eddies, the current variance ellipses are relatively large in these region. We present a schematic map of the East Sea surface current based on the surface drifter data. The significance of this study is that the surface ocean circulation of the East Sea, which has been mainly studied by numerical model simulations and the sea surface height data obtained from satellite altimeters, was analyzed based on in-situ Lagrangian observational current data.
Keywords
Surface drifter; Surface current; East Sea; East Korea Warm Current; Mean current; Current variance ellipse;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
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1 Park, J.J. and K. Kim, 2013. Deep currents obtained from Argo float trajectories in the Japan/East Sea. Deep-Sea Res., 85: 169-181.
2 Park, K.A., J.Y. Chung and K. Kim, 2004. Sea surface temperature fronts in the East (Japan) Sea and temporal variations. Geophys. Res. Lett., 31: L07304, doi:10.1029/2004GL019424.   DOI
3 Kim, Y.H., K.I. Chang, J.J. Park, S.K. Park, S.H. Lee, Y.G. Kim, K.T. Jung and K. Kim, 2009. Comparison between a reanalyzed product by 3-dimensional variational assimilation technique and observations in the Ulleung Basin of the East/Japan Sea, J. Mar. Syst., 78(2): 249-264, doi:10.1016/j.jmarsys.2009.02.01.7.   DOI
4 Lee, D.K. and P.P. Niiler, 2010b. Eddies in the southwestern East/Japan Sea. Deep-Sea Res. I, 57: 1233-1242.   DOI
5 Yoon, J.H. and H. Kawamura, 2002. The formation and circulation of the Intermediate water in the Japan Sea. J. Oceangr., 58: 197-211.   DOI
6 Lee, D.K. and P.P. Niiler, 2005. The energetic surface circulation patterns of the Japan/East Sea. Deep-Sea Res. II, 52: 1547-1563.   DOI
7 Lee, D.K. and P.P. Niiler, 2010a. Surface circulation in the southwestern Japan/East Sea as observed from drifter and sea surface height. Deep-Sea Res. I, 57: 1222-1232.   DOI
8 Lee, S.H., M.J. Kim, C.S. Kim, B.J. Choi and H.B. Moon, 2017. Surface Circulation and Vertical Structure of Current off the Keum River Estuary, Korea in Later Spring 2008. Ocean Sci. J., 52: 307-327.   DOI
9 Lee, D.K., P.P. Niiler, S.R. Lee, K. Kim and H.J. Lie, 2000. Energetics of the surface circulation of the Japan/East Sea. J. Geophys. Res., 105: 19561-19573.   DOI
10 Lee, S.H., D.S. Byun, B.J. Choi and E. Lee, 2009. Estimation of the surface currents using mean dynamic topography and satellite altimeter data in the East Sea. The Sea, 14: 195-204.
11 Mitchell, D.A., D.R. Watts, M. Wimbush, W.J. Teague, K.L. Tracey, J.W. Book, K.I. Chang, M.S. Suk and J.H. Yoon, 2005. Upper circulation patterns in the Ulleung Basin. Deep-Sea Res. II, 52: 1617-1638.   DOI
12 Morimoto, A. and T. Yanagi, 2001. Variability of sea surface circulation in the Japan Sea. J. Oceanogr., 57: 1-13.   DOI
13 Pak, G., Y.H. Kim and Y.G. Park, 2018. Lagrangian approach for a new separation index of the East Korea Warm Current. Ocean Sci. J., 54(1): 29-38, doi:10.1007/s12601-018-0059-2   DOI
14 Isoda, Y., 1994. Warm eddy movements in the Eastern Japan Sea. J. Oceanogr. 50: 1-15.   DOI
15 Choi, B.J., S.H. Cho, H.S. Jung, S.H. Lee, D.-S. Byun and K. Kwon, 2018. Interannual variation of surface circulation in the Japan/East Sea due to external forcings and intrinsic variability. Ocean Sci. J., 53(1): 1-16, doi.org/10.1007/s12601-017-0058-8.   DOI
16 Choi, B.J., D.B. Haidvogel and Y.K. Cho, 2004. Nonseasonal sea level variations in the Japan/East Sea from satellite altimeter data. J. Geophy. Res., 109, C12028, doi:10.1029/2004JC002387.   DOI
17 Choi, B.J., D.B. Haidvogel and Y.K. Cho, 2009. Interannual variation of the Polar Front in the Japan/East Sea from summertime hydrography and sea level data. J. Mar. Syst., 78: 351-362.   DOI
18 Kawabe, M., 1986. Study on the Kuroshio and the Tsushima Current variations of the current path. J. Oceanogr. Soc. Japan, 42: 319-331 (in Japanese with English abstract).   DOI
19 Kim, C.H. and J.H. Yoon, 1999. A numerical modeling of the upper and the intermediate layer circulation in the East Sea. J. Oceanogr., 55: 327-345.   DOI
20 Kim, K., Y.K. Cho, B.J. Choi, Y.G., Kim and R.C. Beardsley, 2002. Sea level variability at Ulleung Island in the East (Japan) Sea. J. Geophy. Res., 107(C3): 3015, doi:10.1029/2001JC000895.   DOI
21 Kim, K. and R. Legeckis, 1986. Branching of the Tsushima Current in 1981-1983. Prog. Oceanogr., 17: 265-276.   DOI
22 Senjyu, T., H.R. Shin, J.H. Yoon, Z. Nagano, H.S. An, S.K. Byun and C.K. Lee, 2005. Deep flow field in the Japan/East Sea as deduced from direct current measurements. Deep-Sea Res., 52: 1726-1741.
23 Lee, D.K., J.C. Lee, S.R. Lee and H.J. Lie, 1997. A Circulation Study of the East Sea Using Satellite-Tracked Drifters 1: Tsushima Current. J. Korean Fish. Soc., 30(6): 1021-1032.
24 Choi, B.J., D.-S. Byun and K.H. Lee, 2012. Satellite-altimeter-derived East Sea Surface Currents: Estimation, Description and Variability Pattern, The Sea, 17: 225-242.   DOI
25 Park, K.A., J.E. Park, B.J. Choi, D.-S. Byun and E.I. Lee, 2013. An oceanic current map of the East Sea for science textbooks based on scientific knowledge acquired from oceanic measurements. The Sea, 18: 234-265.   DOI
26 Park, K.A., D.S. Ullman, K. Kim, J.Y. Chung and K.R. Kim, 2007. Spatial and temporal variability of satellite-observed Subpolar Front in the East/Japan Sea. Deep-Sea Res. Pt I, 54: 453-470.   DOI
27 Preller, R.H. and P.J. Hogan, 1998. Oceanography of the Sea of Okhotsk and Japan/East Sea, Coastal segment (11,S), in The Sea, vol. 11, edited by A. L. Robinson and K. H. Brink, pp. 429-481, John Wiley, Hoboken, N.J.
28 Talley, L.D., D.H. Min, V.B. Lobanov, V.A. Luchin, V.I. Ponomarev, A.N. Salyuk, A.Y. Shcherbina, P.Y. Tishchenko and I. Zhabin, 2006. Japan/East Sea water masses and their relation to the Sea's circulation. Oceanogr., 19: 32-49.   DOI
29 Thomson, R.E. and W.J. Emery, 2014. Data analysis methods in physical oceanography. 3rd ed. Elsevier Science, 728 pp.
30 Yoon, J.H., 1982. Numerical experiment on the circulation in the Japan Sea. III. Mechanism of the nearshore branch of the Tsushima Current. Journal of the Oceanography Society of Japan, 38: 125-130.   DOI