References
- 국립방재연구소 (1999). 동해안에서의 쓰나미 위험도 평가. 국립방재연구소 보고서
- 김경옥 (2000). 유한요소모형을 이용한 황해 및 동중국해의 조석산정. 석사학위논문, 성균관대학교
- 윤성범, 임채호, 윤기승, 최병호 (2003). 지진해일 전파수치 모의를 위한 ADCIRC 유한요소모형의 일차원분산특성 분석. 한국해안해양공학회지, 15(2), 108-115
- 윤성범, 임채호, 윤기승, 최병호 (2004). 양해법을 이용한 일차원 지진해일전파 유한요소모형의 분산보정. 한국해안해양공학회지, 16(2), 57-63
- 최병호, 홍성진, 이제신 (2002a). 공백역 지진에 의한 동해안의 지진해일 산정. 한국지진공학회논문집, 6(3), 73-86
- 최병호, 김경옥, 엄현민 (2002b) 한국근해의 디지털 수심표고 데이터베이스. 한국해안해양공학회지, 14(1), 41-50
- 최병호, 에핌 페리놉스키, 이제신, 우승범 (2002c). 공백역 지진에 의한 동해에 연한 해안에서의 지진해일 위험도 산정. 한국지진공학회 논문집, 6(5), 1-17
- 한국지진해일 조사단 (1994). 일본 북해도 남서부 지진에 의한 한국동해안 지진조사. 한국해안해양공학회지, 6(1), 117-125
- Chippada, S., Dawson, C.N., Martinez, M. and Wheeler, M.F. (1996). Parallel computing for finite element models of surface water flow. Computational Methods in Water Resources XI, Computational Mechanics Publications, Southampton, U.K., 63-70
- Choi, B.H., Pelinovsky, E., Ryabov, I. and Hong, S.J. (2002). Distribution functions of tsunami wave heights. Natural Hazards, 25, 1-21 https://doi.org/10.1023/A:1013379705323
- Choi, B.H., Pelinovsky, E., Hong, S.J. and Woo, S.B. (2003). Computation of tsunamis in the East (Japan) Sea using dynamically interfaced nested model. Pure and Applied Geophysics, 160(8), 1383-1414 https://doi.org/10.1007/s00024-003-2352-x
- Go, Ch.N. (1987). Statistical properties of tsunami runup heights at the coast of Kuril Island and Japan. Institute of Marine Geology and Geophysics, Sakhalin, Preprint
- Go, Ch.N. (1997). Statistical distribution of the tsunami heights along the coast. Tsunami and accompanied phenomena, Sakhalin, 7, 73-79
- Kajiura, K. (1983). Some statistics related to observed tsunami heights along the coast of Japan. Tsunamis - Their Science and Engineering. Terra Pub., Tokyo, 131-145
- Karypis, G. and Kumar, Y. (1998). A Fast and High Quality Multilevel Scheme for Partitioning Irregular Graphs. SIAM Journal on Scientific Computing, 20(1), 359-392 https://doi.org/10.1137/S1064827595287997
- Kolar, R.L., Westerink, J.J., Canterkin, M.E. and Blain, C.A. (1994). Aspects of nonlinear simulations using shallow-water models based on the wave continuity equation. Computers Fluids, 23, 523-538 https://doi.org/10.1016/0045-7930(94)90017-5
- Luettich, R.A., Westerink, J.J. and Scheffner, N.W. (1991). ADCIRC: An advanced three-dimensional circulation model for shelves, coasts, and estuaries. Tech. Report 1, Department of the Army, U.S. Army Corps of Engineers, Washington, D.C. 20314-1000
- Manshinha, L. and Smylie, D.E. (1971). The displacement fields of inclined faults. Bull. of Amer. Seism. Soc., 61(5), 1433-1440
- Mazova, R., Pelinovsky, E. and Poplavsky, A. (1989). Physical interpretation of tsunami height repeatability law. Volcanology and Seismology, 8(1), 94-101
- PMEL (2005). National tsunami hazard mitigation program TIME(Tsunami Inundation Mapping Efforts), http://www.pmel.noaa.gov/tsunami/time
- Shuto, N. and Unohana, M. (1984). Tsunami Engineering Technical Report, Disaster Control Research Center, Tohoku University, 1(2)
- Turner, P.J. and Baptista, A.M. (1999). ACE/gredit Online Documentation, http://www.ccalmr.ogi.edu/CORIE/software/ace/docs/gredit
- Van Dorn, W.G. (1965). Tsunamis. Advances in Hydroscience. Ed. Y.T. Chow. Acad. Press, London, 2, 1-48
- Westerink, J.J., Luettich, R.A. and Muccino, J.C. (1994). Modeling tides in the western North Atlantic using unstructured graded grids. Tellus, 4(6A), 178-199