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



Development of Probabilistic Models Optimized for Korean Marine Environment Varying from Sea to Sea Based on the Three-parameter Weibull Distribution
Yong Jun Cho
J Korean Soc Coast Ocean Eng. 2024;36(1):20-36.   Published online February 29, 2024
doi: https://doi.org/10.9765/KSCOE.2024.36.1.20
                        
Estimate of Wave Overtopping Rate on Armoured Slope Structures Using FUNWAVE-TVD Model
Moon Su Kwak
J Korean Soc Coast Ocean Eng. 2024;36(1):11-19.   Published online February 29, 2024
doi: https://doi.org/10.9765/KSCOE.2024.36.1.11
                        
Estimation of Representative Wave Period and Optimal Probability Density Function Using Wave Observed Data around Korean Western Coast
Uk-Jae Lee, Hong-Yeon Cho, Jin Ho Park, Dong-Hui Ko
J Korean Soc Coast Ocean Eng. 2023;35(6):146-154.   Published online December 31, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.6.146
                        
Design Wave Period Estimation Using the Wave Height Information
Hong-Yeon Cho, Weon Mu Jeong, Ju Whan Kang, Gi-Seop Lee
J Korean Soc Coast Ocean Eng. 2023;35(4):84-94.   Published online August 31, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.4.84
                        
Physical Model Experiment for Estimating Wave Overtopping on a Vertical Seawall under Regular Wave Conditions for On-Site Measurements
Dong-Hoon Yoo, Young-Chan Lee, Do-Sam Kim, Kwang-Ho Lee
J Korean Soc Coast Ocean Eng. 2023;35(4):75-83.   Published online August 31, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.4.75
                        
A Study on the Improvement of Wave and Storm Surge Predictions Using a Forecasting Model and Parametric Model: a Case Study on Typhoon Chaba
Jin-Hee Yuk, Minsu Joh
J Korean Soc Coast Ocean Eng. 2023;35(4):67-74.   Published online August 31, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.4.67
                           Cited By 1
Physical Model Tests for Mean Wave Overtopping Discharge of Rubble-mound Structure Covered by Tetrapods: RC/AC = 1 and cota = 1.5 Conditions
Jong-In Lee, Young-Taek Kim
J Korean Soc Coast Ocean Eng. 2023;35(3):49-56.   Published online June 30, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.3.49
                        
A Simplified Numerical Method for Simulating the Generation of Linear Waves by a Moving Bottom
Jae-Sang Jung
J Korean Soc Coast Ocean Eng. 2023;35(2):41-48.   Published online April 30, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.2.41
                        
Physical Model Test for Wave Overtopping for Vertical Seawall with Relatively Steep Bottom Slope for the Impulsive Wave Condition
Young-Taek Kim, Jong-In Lee
J Korean Soc Coast Ocean Eng. 2023;35(2):33-40.   Published online April 30, 2023
doi: https://doi.org/10.9765/KSCOE.2023.35.2.33
                           Cited By 2
Estimation of the Input Wave Height of the Wave Generator for Regular Waves by Using Artificial Neural Networks and Gaussian Process Regression
Jung-Eun Oh, Sang-Ho Oh
J Korean Soc Coast Ocean Eng. 2022;34(6):315-324.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.315
                        
Persistence Analysis of Observed Metocean Data in the Southwest Coast in Korea
Gi-Seop Lee, Gyung-Sik Seo, Hong-Yeon Cho
J Korean Soc Coast Ocean Eng. 2022;34(6):303-314.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.303
                        
A Study on the Application of Low Crest Structures to Reduce Wave Overtopping
Kyu-Tae Shim, Kyu-Han Kim, Ki-Seock Cha
J Korean Soc Coast Ocean Eng. 2022;34(6):290-302.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.290
                        
Optimal Estimation of the Peak Wave Period using Smoothing Method
Uk-Jae Lee, Byeong Wook Lee, Dong-Hui Ko, Hong-Yeon Cho
J Korean Soc Coast Ocean Eng. 2022;34(6):266-274.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.266
                           Cited By 1
Hydraulic and Numerical Tests on Wave Overtopping for Vertical Seawall with Relatively Shallow and Steep Sloped Water Depth
Young-Taek Kim, Hyukjin Choi, Hwangki Lee
J Korean Soc Coast Ocean Eng. 2022;34(6):258-265.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.258
                           Cited By 4
A Numerical Study of Rip Current Generation Modulated with Tidal Elevations at the Daecheon Beach
Junwoo Choi
J Korean Soc Coast Ocean Eng. 2022;34(6):247-257.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.247
                        
Time Response Analysis of Caissons by Installing New Caisson on Existing Caisson Breakwater in Irregular Wave Condition
Min Su Park, Young Taek Kim, Sangki Park, Jiyoung Min
J Korean Soc Coast Ocean Eng. 2022;34(6):233-246.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.233
                        
Numerical Simulation on Reduced Runup Height of Solitary Wave by Fixed Submerged and Floating Rectangular Obstacles
Choong Hun Shin, Hyung Suk Kim
J Korean Soc Coast Ocean Eng. 2022;34(6):211-221.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.211
                        
Comparative Analysis of Forecasting Accuracy and Model Performance for Development of Coastal Wave Forecasting System Based on Unstructured Grid
Min Roh, Sang Myeong Oh, Pil-Hun Chang, Hyun-Suk Kang, Hyung Suk Kim
J Korean Soc Coast Ocean Eng. 2022;34(6):188-197.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.188
                        
A Study on the Methods to Improve High-Wave Reproducibility during Typhoon
Jong-Dai Back, Kyong-Ho Ryu, Jong-In Lee, Weon-Mu Jeong, Yeon-S. Chang
J Korean Soc Coast Ocean Eng. 2022;34(6):177-187.   Published online December 27, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.6.177
                        
Characteristics of Local Scour Around the Double Pile in Waves
Hyun Sik Oh, Ho Jin Lee
J Korean Soc Coast Ocean Eng. 2022;34(5):169-175.   Published online October 31, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.5.169
                        
Interaction Analysis between Waves and Caissons by Damping Zone Effect for Installing New Caisson on Old Caisson Breakwater
Min Su Park, Young Taek Kim, Sangki Park, Jiyoung Min
J Korean Soc Coast Ocean Eng. 2022;34(5):156-168.   Published online October 31, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.5.156
                           Cited By 1
Experimental Study on Impact Pressure at the Crown Wall of Rubble Mound Seawall and Velocity Fields using Bubble Image Velocimetry
Byoungjoon Na, Haeng Sik Ko
J Korean Soc Coast Ocean Eng. 2022;34(4):119-127.   Published online August 31, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.4.119
                        
An Analytical Study of Regular Waves Generated by Bottom Wave Makers in a 3-Dimensional Wave Basin
Jae-Sang Jung, Changhoon Lee
J Korean Soc Coast Ocean Eng. 2022;34(4):93-99.   Published online August 31, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.4.93
                           Cited By 2
Characteristics of Wave Pressures According to the Installation Location of the Caisson Superstructure under Regular Waves
Jae-Hyung Jun, Suk-Chan Lee, Do-Sam Kim, Kwang-Ho Lee
J Korean Soc Coast Ocean Eng. 2022;34(3):82-92.   Published online June 30, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.3.82
                        
Development of Analytical Solutions on Velocities of Regular Waves Generated by Bottom Wave Makers in a Flume
Jae-Sang Jung, Changhoon Lee
J Korean Soc Coast Ocean Eng. 2022;34(3):58-71.   Published online June 30, 2022
doi: https://doi.org/10.9765/KSCOE.2022.34.3.58
                           Cited By 2
Method of the Laboratory Wave Generation for Two Dimensional Hydraulic Model Experiment in the Coastal Engineering Fields: Case of Random Waves
Jong-In Lee, Il Rho Bae, Young-Taek Kim
J Korean Soc Coast Ocean Eng. 2021;33(6):383-390.   Published online December 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.6.383
                        
Wave Prediction in a Harbour using Deep Learning with Offshore Data
Geun Se Lee, Dong Hyeon Jeong, Yong Ho Moon, Won Kyung Park, Jang Won Chae
J Korean Soc Coast Ocean Eng. 2021;33(6):367-373.   Published online December 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.6.367
                           Cited By 1
Interaction Effect between Caissons by Installation of New Caisson on Existing Caisson Breakwater in Second Order Stokes Wave Condition
Min Su Park
J Korean Soc Coast Ocean Eng. 2021;33(6):345-356.   Published online December 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.6.345
                           Cited By 2
Horizontal Wave Pressures on the Crown Wall of Rubble Mound Breakwater under Non-Breaking Condition
Jong-In Lee, Geum Yong Lee, Young-Taek Kim
J Korean Soc Coast Ocean Eng. 2021;33(6):321-332.   Published online December 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.6.321
                        
Spatial Variation of Wave Force Acting on a Vertical Detached Breakwater Considering Diffraction
Jae-Sang Jung, Changhoon Lee
J Korean Soc Coast Ocean Eng. 2021;33(6):275-286.   Published online December 31, 2021
doi: https://doi.org/10.9765/KSCOE.2021.33.6.275
                           Cited By 1
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