Sea level observations in the Korean seas by remote sensing

  • Yoon, Hong-Joo (Department of Satellite Information Sciences, College of Environmental and Marine Science & Technology, Pukyong National University)
  • Published : 2004.03.01

Abstract

Sea level variations and sea surface circulations in the Korean seas were observed by Topex/Poseidon altimeter data from 1993 through 1997. In sea level variations, the West and South Sea showed relatively high variations with comparison to the East Sea. Then, the northern and southern area in the West Sea showed the range of 20∼30cm and 18∼24cm, and the northern west of Jeju island and the southern west of Tsushima island in the South Sea showed the range of 15∼20cm and 10∼15cm, respectively. High variations in the West Sea were results to the inflow in sea surface of Yellow Sea Warm Current (YSWC) and bottom topography. Sea level variations in the South Sea were due to two branch currents (Jeju Warm Current and East Korea Warm Current) originated from Kuroshio Current (KC). In sea surface circulations, there existed remarkably three eddies circulations in the East Sea that are mainly connected with North Korea Cold Current (NKCC), East Korea Warm Current (EKWC) and Tushima Warm Current (TWC). Their eddies are caused basically to the influence of currents in sea surface circulations; Cyclone (0.03 cm/see) in the Wonsan bay off shore with NKCC, and anticyclone (0.06 cm/see) in the southwestern area of Ulleung island with EKWC, and cyclone (0.01 cm/see) in the northeastern area of Tushima island with TWC, respectively.

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References

  1. Cess, R. D., and S. D. Glazman, 1981: The effect of the ocean heat capacity upon global warming due to increasing atmospheric dioxide, J. Geophys. Res., 86C, 498-502
  2. Carnes, M. R., J. L. Mitchell, and P. W. de Witt, 1990: Synthetic temperature profiles derived from Geosat altimetry; Comparision with air-dropped expendable bathythermograph profiles. J. Geophys. Res., 95, 17979-17992 https://doi.org/10.1029/JC095iC10p17979
  3. Nerem, R. S., and B. J. Haines., J. Hendricks, J. F. Minster, G. T. Mitchum, and W. B. White, 1997: Improved determination of global mean sea level variations from TOPEX/Poseidon altimeter data. Geophys. Res. Lett., 24,1331-1334 https://doi.org/10.1029/97GL01288
  4. Eric W. Leuliette and John M. Wahr, 1999: Coupled Pattern Analysis of Sea Temperature and TOPEX/ Poseidon Sea Surface Height, J. Physic Ocean, 29:599-611 https://doi.org/10.1175/1520-0485(1999)029<0599:CPAOSS>2.0.CO;2
  5. Le Traon, P. Y., F. Nadal and N. Ducet, 1998: An improved mapping method of multi-satellite altimeter data. J. Atm. Ocean. Techn., 25: 522-534
  6. AVISO, AVISO User Handbook, 1992: Merged TOPEX/POSEIDON Products, Publ. AVI-NT-O2-10 I-CN, 2.1, Cent, Natl. d'Etudes Spatiales, Toulouse, France
  7. Choi, B. H., 1980: A tidal model of the Yellow Sea and the East China Sea, Korea Ocean Research and Development Institute (KORDI) Report, 80-02, pp. 72