박사

금강하구역에서 HF radar로 관측한 해수유동장의 시·공간 특성분석과 예측모델 기반구축

김창수 2017년
논문상세정보
    • 저자 김창수
    • 형태사항 26 cm
    • 학위논문사항 군산대학교, 해양학과, 학위논문(박사)-, 2017. 2
    • 발행지 군산
    • 언어 kor
    • 출판년 2017
    • 발행사항 군산대학교
    유사주제 논문( 0)

' 금강하구역에서 HF radar로 관측한 해수유동장의 시·공간 특성분석과 예측모델 기반구축' 의 참고문헌

  • 박사
  • 한국수문조사연보
    -2014. http://www.hrfco.go.kr/html/dataroom/flood gate.jsp [2005]
  • 한국농어촌공사, -2014
    금강하구둑 수문방류량 자료 [2005]
  • 지리정보체계를 이용한 만경 동진 강의 유역정보 및 오염부하량 분석
    고재원 정신택 조흥연 한국해안해양공학회지,13(3): 237-244 [2001]
  • 조류 조화상수의 월변동성 완화방법 고찰
    변도성 Ocean and Polar Research, Vol.33(3): 309-319 [2011]
  • 새만금 4호 방조제 완성 전후 HF레이더로 관측된 표층 M2 조류의 변화
    권효근 김영배 김창수 손영태 이광희 이상호 정우진 한 국해양학회지(바다),11(2):37-48 [2006]
  • 금강플룸의 구조와 분포에 대한 수치모 델 연구
    신은주 이상호 최현용 한국해양학회지(바다), 7(3):157-170 [2002]
  • 금강 하 구역에서 HF radar로 측정한 유속의 정확도
    권효근 김창수 문홍배 백혜연 손영태 이상호 최병주 한국해양학회지(바다) 13(1):42-55 [2008]
  • 국림해양조사원, 우리나라 주변해역 해류모식도 제작 활동
    발간 등록번호 11-1192136-000176-01, p. 60 [2015]
  • de Boer GJ, Pietrzak JD, and Winterwerp JC (2008) Using the potential energy anomaly equation to investigate tidal straining and advection of stratification in a region of freshwater influence. Ocean Modelling 22 (2008) 1–11.
  • Yoshikawa Y, A Masuda, K Marubayashi, M Ishibashi, 2010. Seasonal variations of the surface currents in the Tsushima Strait. J. of Oceanography. vol66. pp. 223-232.
  • Yankovsky, A.E., Chapman, D.C., 1997. A simple theory for the fate of buoyant coastal discharges. Journal of Physical Oceanography 27, 1386 1401, 1997.
  • Ullman D. S, J. O’Donnell, J. Kohut, T. Fake, A. Allen, 2006. Trajectory prediction using HF radar surface currents: Monte Carlo simulations of prediction uncertainties. J. Geophys. Res. Vol.111, C12005,
  • Soulsby, R.L. (1990). Tidal-current boundary layers. The Sea, vol. 9, Ocean Engineering Science, pp. 523-566.
  • Son Y. -T., S. -H. Lee, C. -S. Kim, J. C. Lee and G. -H. Lee, 2007. Surface current variability in the Keum River Estuary (South Korea) during summer 2002 as observed by high frequency radar and coastal monitoring buoy. Cont. Shelf Res. 27, 43-63
  • Simpson, J., W. Bos, F. Schirmer, A. Souza, T. Rippeth, S. Jones & D. Hydes, 1993. Periodic stratification in the Rhine ROFI in the North Sea. Oceanologica acta, 16(1):23-32.
  • Simpson, J., J. Brown, J. Matthews, and G. Allen, 1990. Tidal straining, density currents, and stirring in the control of estuarine stratification. Estuaries Vol.13. No2. p125-132.
  • Sergey Frolov, Jeffrey Paduan, Michael Cook, James Bellingham, 2012. Improved statistical prediction of surface currents based on historic HF-radar observations. Ocean Dynamics Vol. 62, issue7, p1111-1122.
  • Riedlinger, S. K. and Jacobs, G. A. 2000. Study of the dynamic of wind-driven transports into the Yellow Sea during winter. Journal of Geophysical Research: Oceans, 105 (C12), 28,695-28,708.
  • Pugh, D.T., 2004. Changing Sea levels effects of Tides, Weather and Climate Change, pp. 55 –114.
  • Prandle, D., 1987. The fine structure of near shore tidal and residual circulations revealed by HF radar surface current measurements. J. Physical Oceanography, 17: 231-245.
  • Pawlowicz, R., Beardsley, B., and Lentz, S., 2002, Classical tidal harmonic analysis including error estimates in MATLAB using T_TIDE: Computers and Geosciences, v.28, p.929–937.
  • Oppenheim, Alan V., Ronald W. Schafer, and John R. Buck. Discrete-Time Signal Processing. 2nd Ed. Upper Saddle River, NJ: Prentice Hall, 1999.
  • NOAA, 2000. Tide and Current Glossary, pp. 7-22.
  • Matlab을 이용한 해양자료처리
  • Marmorino G.O. , L.K. Shay, B.K. Haus, R.A. Handler H.C. Graber, M.P. Horne, 1999. An EOF analysis of HF doppler radar current measurements of the Chesapeake bay buoyant outflow. Cont. Shelf Res.,19: 271-288.
  • Lippahardt, B. L., Jr., A. D. Kirwan Jr., C. E. Grosch., J. K. Lewis., and J. D. Paduan., 2000. Blending HF radar and model velocities in Monterey Bay through normal mode analysis, J. Geophys. Res., 105(C2), 3425–3450.
  • Lipa, B.J., and D.E. Barrick., 1983. Least squates methods for the extraction of surface currents from CODAR crossed-loop data: Application at ARSLOE, IEEE J. Oceanic Eng., 13(2), 507-513.
  • Lee, S.H. and Beardsely, 1999. Influence of stratification on residual tidal currents in the Yellow Sea. J. Geophys. Res. 104(C7): 15679-15701.
  • Lee S. H, C. Y Kang, B. J Choi, and C. S Kim, 2013. Surface Current Response to Wind and Plumes in a Bay-shape Estuary of the eastern Yellow Sea: Ocean Radar Observation. Ocean Sci. J. (2013)48(1):117-139
  • Kundu, P. K. 1976. Ekman veering near the ocean bottom, J. Phys. Oceanography., 6, 238 – 242.
  • Knight, P. J., Howarth, M. J., 1999. The flow through the northern channel of the Irish Sea. Continental Shelf Research, 19: 693-713.
  • Knight and Howarth, 1999, Haus et al., 2000, Hisaki et al., 2001, Knauss, John A., 1977, Introduction to physical oceanography 2ed. Prentice-hall. Inc., NewJersey, pp.96-104.
  • Kim, S. Y., E. Terrill, and B. Cornuelle, 2008. Mapping surface currents fromHF radar radial velocity measurements using optimal interpolation. J. Geophys. Res., 113, C10023,
  • Kim, S. Y., E. Terrill, and B. Cornuelle, 2007. Objectively mapping HF radar-derived surface current data using measured and idealized data covariance matrices. J. Geophys. Res., 112, 06021,
  • Kim, S. Y., B. D. Cornuelle, and E. J. Terrill, 2009: Anisotropic response of surface currents to the wind in a coastal region, J. Phys. Oceanogr.39(6), 1512 - 1533,
  • Kaplan, D.M., and F. Lekien, 2007: Spatial interpolation and filtering of surface current data based on open-boundary modal analysis. J. Geophys. Res., 112, C12007,
  • Kang, S. K., 2003. Study on tidal change prediction due to the large scale of coastal reclamation (TIDPRE,III), KORDI rept. BSPM 191-00-1560-2, pp426.
  • Hisaki, Y., T.Tokeshi, W. Fujiie, K. Sato., and S. Fujii., 2001. Surface current variability east of Okinawa Island obtained from remotely sensed and in situ observational data. J. Geophys.Res., 106(12): 31057-31073.
  • Gonella, J. (1972): “A rotary-component method for analyzing meteorological and oceanographic vector time series.”, Deep Sea Res., 19, 833-846.
  • Garvine, R.W., 1995. A dynamical system for classifying buoyant coastal discharges. Continental Shelf Research 15, 1585–1596.
  • Foreman, M.G.G., 1996 Manual for Tidal Heights Analysis and Prediction, Pacific Marine Science Report 77-10, pp. 27-28.
  • Fang, Z., A. Ye, and G. Fang, 1991. Solutions of tidal motions in a semi-closed rectangular gulf with open boundary condition specified. In Tidal Hydrodynamics, B. Parker, Ed., John Wiley &amp, Sons, 153–168.
  • Fairall C. W., E. F. Bradley, J. S. Godfrey, G. A. Wick, J. B. dson, G. S. Young, Cool-skin and warm-layer effects on sea surface temperature, 1996. J. Geophys. Res.,
  • Choi, B. H., 2001. Effect of Saemangeum tidal barriers on the Yellow Sea tidal regime. Proceedings of the first Asian and Pacific Coastal Engineering Conference, APACE 2001, Dalian, China, 1, 25-36.
  • Chapman, R. D., L. K. Shay, H. C. Graber, J. B. Edson, A. Karachintsev, C. L. Trump, and D. B. Ross (1997), On the accuracy of HF radar surface current measurements: Inter-comparisons with ship-based sensors, J. Geophys. Res., 102(C8), 18,737–18,748.
  • Bowden, K.F., 1983. Physical Oceanography of Coastal Water, Ellis Horwood Limited, pp302.
  • Beckers, J. M., and M. Rixen, 2003: EOF calculations and data filling from incomplete oceanographic datasets. J. Atmos. Oceanic Technol., 20, 1839–1856,
  • Beardsley, R. C., R. Limeburner, K. Kim, J. Candela, Lagrangian flow observations in the East China, Yellow and Japan Seas, Mer, 30, 297–314, 1992.
  • Barrick, D.E., 1977. Extraction of wave parameters from measured HF radar sea-echo Doppler spectra. Radio Science 12, 415-424.
  • Alvera-Azc rate, A., A. Barth, M. Rixen, and J. M. Beckers, 2005: Reconstruction of incomplete oceanographic data sets using empirical orthogonal functions: Application to the Adriatic Sea surface temperature. Ocean Modell., 9, 325–346,