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J Korean Soc Coast Ocean Eng > Browse Articles > J Korean Soc Coast Ocean Eng



Development of a Numerical Model Considering Active Tsunami Generation
Taehwa Jung, Sooncheol Hwang, Sangyoung Son
J Korean Soc Coast Ocean Eng. 2021;33(4):160-167.   Published online August 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.4.160
                        
A Study on the Impacts of the 1741 Tsunami Recorded in the Annals of Joseon Dynasty
Sang-Shin Byun, Kyeong Ok Kim
J Korean Soc Coast Ocean Eng. 2021;33(1):30-37.   Published online February 25, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.1.30
                        
Numerical Simulation on Control of Tsunami by Resonator (II) (for Samcheok port)
Kwang-Ho Lee, Jong-Hyeok Jeon, Do-Sam Kim, Yun-Du Lee
J Korean Soc Coast Ocean Eng. 2020;32(6):496-505.   Published online December 31, 2020
doi: https://doi.org/10.9765/KSCOE.2020.32.6.496
                        
Numerical Simulation on Control of Tsunami by Resonator (I) (for Imwon and Mukho ports)
Kwang-Ho Lee, Jong-Hyeok Jeon, Do-Sam Kim, Yun-Du Lee
J Korean Soc Coast Ocean Eng. 2020;32(6):481-495.   Published online December 31, 2020
doi: https://doi.org/10.9765/KSCOE.2020.32.6.481
                        
The Effect of Fault Failure with Time Difference on the Runup Height of East Coast of Korea
Taehwa Jung, Sangyoung Son
J Korean Soc Coast Ocean Eng. 2020;32(4):223-229.   Published online August 31, 2020
doi: https://doi.org/10.9765/KSCOE.2020.32.4.223
                           Cited By 3
Sensitivity Analysis According to Fault Parameters for Probabilistic Tsunami Hazard Curves
Myeong Hwan Jho, Gun Hyeong Kim, Sung Bum Yoon
J Korean Soc Coast Ocean Eng. 2019;31(6):368-378.   Published online December 31, 2019
doi: https://doi.org/10.9765/KSCOE.2019.31.6.368
                        
Construction of Logic Trees and Hazard Curves for Probabilistic Tsunami Hazard Analysis
Myeong Hwan Jho, Gun Hyeong Kim, Sung Bum Yoon
J Korean Soc Coast Ocean Eng. 2019;31(2):62-72.   Published online April 30, 2019
doi: https://doi.org/10.9765/KSCOE.2019.31.2.62
                           Cited By 4
Propagation of Tsunamis Generated by Seabed Motion with Time-History and Spatial-Distribution: An Analytical Approach
Taehwa Jung, Sangyoung Son
J Korean Soc Coast Ocean Eng. 2018;30(6):263-269.   Published online December 31, 2018
doi: https://doi.org/10.9765/KSCOE.2018.30.6.263
                           Cited By 5
Physical Modeling of Horizontal Force on the Inland Vertical Structure by Tsunami-like Waves
Hyongsu Park, Daniel Cox, Sungwon Shin
J Korean Soc Coast Ocean Eng. 2017;29(6):363-368.   Published online December 31, 2017
doi: https://doi.org/10.9765/KSCOE.2017.29.6.363
                           Cited By 1
Numerical Simulation of Tsunami Force Acting on Onshore Bridge (for Tsunami Bore)
Kwang-Ho Lee, Kyung-Hwan Woo, Do-Sam Kim, Ik-Han Jeong
J Korean Soc Coast Ocean Eng. 2017;29(1):46-61.   Published online February 28, 2017
doi: https://doi.org/10.9765/KSCOE.2017.29.1.46
                           Cited By 1
Numerical Simulations of the 2011 Tohoku, Japan Tsunami Forerunner Observed in Korea using the Bathymetry Effect
Jun-Whan Lee, Eun Hee Park, Sun-Cheon Park, Duk Kee Lee, Jong Ho Lee
J Korean Soc Coast Ocean Eng. 2016;28(5):265-276.   Published online October 31, 2016
doi: https://doi.org/10.9765/KSCOE.2016.28.5.265
                           Cited By 3
Numerical Analysis of the Depression Effect of Hybrid Breaker on the Run Up Height due to Tsunami based on the Modified Leading Depression N (LDN) Wave Generation Technique
J Korean Soc Coast Ocean Eng. 2015;27(1):38-49.   Published online February 28, 2015
doi: https://doi.org/10.9765/KSCOE.2015.27.1.38
                           Cited By 5
Numerical Study on Propagation Characteristics of Tsunami Induced by Tokai, Tonankai and Nankai Massive Earthquakes
J Korean Soc Coast Ocean Eng. 2013;25(6):386-393.   Published online December 31, 2013
doi: https://doi.org/10.9765/KSCOE.2013.25.6.386
                        
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