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태풍통과시 동해에서의 해수면 냉각현상

Sea Surface Cooling in the East Sea with the Passage of Typhoons

  • 홍철훈 (부경대학교 해양생산관리학과) ;
  • 손익성 (부경대학교 해양생산관리학과)
  • HONG Chul-Hoon (Department of Marine Production Management, Pukyong National University) ;
  • SOHN Ik-Sung (Department of Marine Production Management, Pukyong National University)
  • 발행 : 2004.04.01

초록

Sea surface cooling (SSC) with the passage of typhoons is examined in the East Sea using the Japan Meteorological Agency buoy data $(37^{\circ}45'N,\;134^{\circ}23'E)$ during 1983-2000 and a three-dimensional primitive equation model (the Princeton Ocean Model). Forty typhoons in this period induced the SST decrease ranging from about $-0.5^{\circ}C\;to\;-4.3^{\circ}C.$ Intense SSC $(<-2^{\circ}C)$ occurs with typhoons that passed mainly through the left-hand side of the buoy station. The model is implemented to examine a physical process of SSC with a typical-track typhoon in the northwestern Pacific $(24^{\circ}N\;to\;52^{\circ}N).$ The model well reproduces prominent features in the observation and addresses how it happens; SSC is induced mainly by momentum mixing effect stirred with the typhoon rather than upwelling.

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참고문헌

  1. Blumberg, A.F. and G.L. Mellor. 1987. A description of a three-dimensional coastal ocean circulation model. In: Three Dimensional Coastal Ocean Models, Coastal Estuarine Science, vol. 4, Heaps, N.S. ed. AGU, Washington, D.C., pp 208
  2. Chen, C.T., Lie, C.T., Chung, W.S., Yang, Y.J., Shiah, F.K., Tang, T.Y. and Chung, S.W. 2003. Enhanced buoyancy and hence upwelling of subsurface Kuroshio waters after a typhoon in the southern East China Sea, J. Mar. Syst., 42, 65-79 https://doi.org/10.1016/S0924-7963(03)00065-4
  3. Fedorov, K.N., A.A. Varfolomeev, A.I. Ginzburg, A.G. Zatsepin, A.Y. Krasnopevtsev and A.E. Skylarov. 1979. Thermal reaction of the ocean on the passage of the Hurricane Ella. Okeanologiya, 19, 992-1001
  4. Fujita, T. 1952. Pressure distribution within typhoon. Geophys. Mag., 23, 437-451
  5. Galperin, B., L.H. Kantha, S. Hassid and A. Rosati. 1988. A quasi-equilibrium turbulent energy model for geo- physical flows, J. Atmos. Sci., 45, 55-62 https://doi.org/10.1175/1520-0469(1988)045<0055:AQETEM>2.0.CO;2
  6. Hong, C.H. and J.H. Yoon. 1993. The response of sea levels to typhoons in the Japan Sea: I. The response on the north Japanese coast, Bull. Kor. Fish. Soc., 26, 567-579
  7. Hong, C.H. 1996. Sea level response in the Korea Strait to typhoons, J. Kor. Soc. Oceanogr., 31, 107-116
  8. Hong, C.H. 2003a. Sea surface cooling with the passage of typhoons in the northwestern Pacific Ocean. Proc. IUGG 2003, Abstracts Week B, B409
  9. Hong, C.H. 2003b. A three-dimensional numerical study of coastal upwelling in the northern Japanese coastal region with the passage of Typhoon Oliwa. J. Kor. Fish. Soc. 36, 723-734. (in Korean)
  10. Hong, C.H. and J.H. Yoon. 2003. A three-dimensional numerical study of Typhoon Holly in the northern Pacific Ocean. J. Geophys. Res. 108 (C8), 3282, 38-11-8 https://doi.org/10.1029/2002JC001563
  11. Jordan, C.L. 1964. On the influence of tropical cyclones on the sea surface temperature. Proc. Symp. Trop. Meteorol., Wellington, New Zealand Meteor. Serv., 614-622
  12. Kim B.K. 1995. Vertical variation of sea surface tem- perature caused by typhoon on south coastal waters in summer season. Abstract of the Spring Meeting in 1995 of the Korean Society of Oceanography, pp. 19. (in Korean)
  13. Lee D.K. and P. Niiler. 2003. Ocean response to typhoon Rusa in the south sea of Korea and in the East China Sea. J. Kor. Oceanogr., 38, 60-67
  14. Leipper, D.F. 1967. Observed ocean conditions and Hurricane Hilada, 1964, J. Atmos. Sci., 24, 182-196 https://doi.org/10.1175/1520-0469(1967)024<0182:OOCAHH>2.0.CO;2
  15. Hydrographic Office of Korea. 1982. Marine Environ- mental Atlas of Korean Waters, pp 3. (in Korean)
  16. Mellor, G. 1996. User's guide for a three-dimensional, primitive equation, numercial ocean model. Atmos. Ocean. Sci. Prog. Princeton Univ., pp 39
  17. Miyazaki, M.,T. Ueno and S. Unoki. 1961. Theoretical investigation of typhoons surges along the Japanese coast. Oceanogr. Mag., 13, 51-75
  18. Price, J.F. 1981. Upper ocean response to hurricane. J. Phys. Oceanogr., 11, 153-175 https://doi.org/10.1175/1520-0485(1981)011<0153:UORTAH>2.0.CO;2
  19. Pudov, V.D., A.A. Varfolomeev and K.N. Fedorov. 1979. Vertical structure of the wake of a typhoon in the upper ocean. Okeanologiya, 21, 142-146
  20. Sakaida F,H. Kawamura and Y. Toba. 1998. Sea surface cooling caused by typhoons in the Tohoku area in August 1989. J. Geophys. Res. 103 (C1), 1053-1065 https://doi.org/10.1029/97JC01859
  21. Senjyu T. and T. Watanabe. 1999. A sudden temperature decrease along the Sanin coast induced by a typhoon. Umito Sora, 75, 1-8. (in Japanese)
  22. Stramma, L., P. Cornillon and J.F. Price. Satellite ob- servations of sea surface cooling by hurricanes, J. Geophys. res., 91, 5031-5035 https://doi.org/10.1029/JC091iC04p05031
  23. Suh J.W., H.M. Lee, H.J. Oh, Y.S. Chang and Y.H. Yoon. 2002. An analysis of oceanic variation before and after the passage of typhoons. Abstract of the Autumn Meeting, 2002 of the Korean Society of Oceano- graphy. 47-51. (in Korean)
  24. Suh Y.S., J.Y. Gu, J.D. Hwang, N.K. Lee and B.K. Kim. 2003. Abnormal oceanic conditions caused by ty-phoons around the Korean peninsula. J. Kor. Fish. Soc., 36, 417-429. (in Korean)
  25. Wright, R. 1969. Temperature structure across the Kuroshio before and after Typhoon Shirley, Tellus, 21, 409-413 https://doi.org/10.1111/j.2153-3490.1969.tb00454.x

피인용 문헌

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  2. Time series changes in sea-surface temperature, chlorophyll a, nutrients, and sea-wind in the East/Japan Sea on the left- and right-hand sides of typhoon shanshan’s track vol.45, pp.4, 2004, https://doi.org/10.1007/s12601-010-0023-2
  3. Chlorophyll-A variability in the southern coast of Java Island, Indian Ocean: corresponding to the tropical cyclone of Ernie vol.162, pp.None, 2018, https://doi.org/10.1088/1755-1315/162/1/012035