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Kim, B. H., Jung, J. S., Lee, J. W. and Jung, J. S. (2010). "Design case of the interlocking breakwater." The Korean Association of Ocean Science and Technology Societies Conference, pp. 2882-2885 (in Korean).
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Kim, B. H., Lee, J. W., Park, W. S. and Jung, J. S. (2010). "Making long caisson breakwater using interlocking system." Journal of The Korean Society of Civil Engineers, Vol. 58, No. 12, pp. 65-71 (in Korean).
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Park, W. S., Won, D. H. and Seo, J. H. (2016). "An interlocking caisson breakwater with fillers." Journal of The Korean Society of Civil Engineers, Vol. 64, No. 8, pp. 28-32 (in Korean).
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Park, W. S., Won, D. H. and Seo, J. H. (2017). "Proposal of sliding stability assessment formulas for an interlocking caisson breakwater under wave forces." Journal of Korean Society of Coastal and Ocean Engineers, Vol. 29, No. 2, pp. 77-82.DOI
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Seo, J. H., Won, D. H. and Park, W. S. (2017). "Behavior of walls of open-cell caissons using filler under abnormally high waves." Journal of Korean Society of Coastal and Ocean Engineers, Vol. 29, No. 2, pp. 83-91.DOI
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Seo, J. H., Yi, J. H., Park, W. S. and Won, D. H. (2015). "Dispersion characteristics of wave forces on interlocking caisson breakwaters by cross cables." Journal of Korean Society of Coastal and Ocean Engineers, Vol. 27, No. 5, pp. 315-323.DOI
7 
Takahashi, S. and Shimosako, K. (1990). "Reduction of wave force on a long caisson of vertical breakwater and its stability." Technical Note of The Port and Harbour Research Institute, Ministry of Transport, Japan, No. 685, pp. 3-20 (in Japanese).
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Takayama, T. and Higashira, K. (2002). "Statistical analysis on damage characteristics of breakwaters." Proc. of Ocean Development Conf., Japan, Vol. 18, pp. 263-268 (in Japanese).DOI