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Numerical Model Applicability Based on a Hydraulic Characteristic Analysis of an Eco-friendly Double-row Submerged Breakwateropen access

Authors
Jeong, Yeon-MyeongJeong, JaeheonPark, TaegunJeon, Ho-SeongHur, Dong-Soo
Issue Date
Aug-2024
Publisher
한국해양공학회
Keywords
Double-row submerged breakwater; Eco-friendly; Hydraulic characteristic; Laboratory experiment; Numerical wave tank
Citation
Journal of Ocean Engineering and Technology, v.38, no.4, pp 164 - 173
Pages
10
Indexed
SCOPUS
KCI
Journal Title
Journal of Ocean Engineering and Technology
Volume
38
Number
4
Start Page
164
End Page
173
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74051
DOI
10.26748/KSOE.2024.061
ISSN
1225-0767
2287-6715
Abstract
In this study, a submerged breakwater with effective wave control and eco-friendly characteristics is developed and proposed. Hydraulic experiments are conducted to compare the hydraulic performance of a submerged breakwater and an eco-friendly double-row submerged breakwater. The hydraulic characteristics are analyzed based on wave reflections and the transmission-splitting method for each experimental cross-section. This splitting technique utilizes Goda’s two-point method, which employs the spectra of two irregular superposed wave fields. In addition, the reliability of the results obtained from the hydraulic experiments is discussed by comparing the results with empirical formulas. The eco-friendly double-row submerged breakwater features approximately half the width of a typical submerged breakwater. Nevertheless, its transmission coefficient (KT) is approximately 20% more effective, and the difference in the average reflection coefficient (KR) values between the two is approximately 0.17. Moreover, the dissipation coefficient (KD) shows a generally similar trend. Based on these experimental results, the hydraulic performance of the eco-friendly double-row submerged breakwater is more efficient regarding wave control, compared with a typical submerged breakwater. These hydraulic characteristics confirm that the numerical model developed for the eco-friendly double-row submerged breakwater accurately reproduces the KT, KR, and KD values within ±5%. © 2024, The Korean Society of Ocean Engineers.
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