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J Korean Soc Coast Ocean Eng
> Browse Articles > J Korean Soc Coast Ocean Eng
Experimental Study for Wave Overtopping Volume Estimation of Rubble-Mound Structure Using Pressure-Current Speed Relationship
Jong-In Lee
J Korean Soc Coast Ocean Eng.
2024;36(5):208-216. Published online October 31, 2024
doi:
https://doi.org/10.9765/KSCOE.2024.36.5.208
Hydraulic Model Experiments and Performance Analysis of Existing Empirical Formulas for Overtopping Discharge on Tetrapod Armored Rubble Mound Structures with Low Relative Freeboard
Sang-Woo Yoo, Jae-Young Kim, Do-Sam Kim, Kwang-Ho Lee
J Korean Soc Coast Ocean Eng.
2024;36(3):105-115. Published online June 30, 2024
doi:
https://doi.org/10.9765/KSCOE.2024.36.3.105
Physical Model Tests for Mean Wave Overtopping Discharge of Rubble-mound Structure Covered by Tetrapods:
R
C
/A
C
= 1 and cot
a
= 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
Experimental Study for Downfall Pressure on the Floor behind Rubble-Mound Structure by Wave Overtopping: Non-Breaking Condition
Jong-In Lee, Gang Il Moon, Young Il Kim
J Korean Soc Coast Ocean Eng.
2022;34(2):27-36. Published online April 28, 2022
doi:
https://doi.org/10.9765/KSCOE.2022.34.2.27
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