JKSCE
KSCE JOURNAL OF CIVIL AND
ENVIRONMENTAL ENGINEERING RESEARCH
KSCE
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ISSN : 1015-6348 (Print)
ISSN : 2799-9629 (Online)
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Journal of the Korean Society of Civil Engineers
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KSCE J. Civ. Environ. Eng. Res.
Open Access, Bi-monthly
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2020-10
(v.40 n.5)
10.12652/Ksce.2020.40.5.0485
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REF
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2
d'Angremond, K., van der Meer, J. W. and de Jong, R. J. (1996). "Wave transmission at low-crested structures." Proceedings of 25th International Conference on Coastal Engineering, ASCE, Orlando, Florida, USA, pp. 3305-3318.
3
Korea Construction Engineering Development (KOCED) (2019). Wave setting up technique for physical model test of harbor and coastal engineering field, SPS-F KOCED 0004-7382: 2019, Available at: www.standard.go.kr (Accessed: June 17, 2020).
4
Kramer, M., Zanuttigh, B., van der Meer, J. W., Vidal, C. and Gironella, F. X. (2005). "Laboratory experiments on low-crested breakwaters." Coastal Engineering, Vol. 52, pp. 867-885.
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Ministry of Oceans and Fisheries (MOF) (2014). Design standards for harbour and fishery ports, Korea Ports and Harbours Association (in Korean).
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Takayama, T., Nagai, K. and Sekiguchi, T. (1985). "Irregular wave experiments on wave dissipation function of submerged breakwater with wide crown." Proceedings of 32nd Japanese Conference on Coastal Engineering, JSCE, Vol. 32, pp. 545-549 (in Japanese).
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Uda, T. (1988). Function and design methods of artificial reef, Ministry of Construction, Japan (in Japanese).
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van der Meer, J. W. and d'Angremond, K. (1991). "Wave transmission at low-crested structures." Proceedings of the Coastal Structures and Breakwaters Conference, ICE, London, pp. 25-41.
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12
van der Meer, J. W., Briganti, R., Zanuttigh, B. and Wang, B. (2005). "Wave transmission and reflection at low-crested structures: Design formulae, oblique wave attack and spectral change." Coastal Engineering, Vol. 52, pp. 915-929.