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Numerical Study on Compound-Slope Seawalls with Different Types of Protective Facings.

Authors :
Zeng, Can-Sheng
Zhan, Jie-Min
Hu, Wen-Qing
Source :
Journal of Coastal Research; 2021, Vol. 38 Issue 1, p182-195, 14p, 1 Color Photograph, 3 Diagrams, 9 Charts, 13 Graphs
Publication Year :
2022

Abstract

Zeng, C.-S.; Zhan, J.-M., and Hu, W.-Q., 2022. Numerical study on compound-slope seawalls with different types of protective facings. Journal of Coastal Research, 38(1), 182–195. Coconut Creek (Florida), ISSN 0749-0208. The compound seawall is an important infrastructure to protect the coast effectively against tide and wave impacts. In this paper, a hybrid realizable k – ∊/laminar model and a volume of fluid interface capture method were used to study compound-slope seawalls with different types of protective facings. An analytical method was used to separate the incident wave and the reflected wave, and the numerical results for a compound-slope seawall with a hollow-block protective facing structure were verified by experimental results. The monitored wave surface, incident wave, and reflected wave data in the numerical simulation were compared with the experimental results, and the results show that the numerical model can simulate the interaction process of waves and compound-slope seawalls well. Furthermore, a series of numerical simulation studies on compound-slope seawalls under different protective facing structures with different wave heights, wave periods, water depths, and structure slopes was conducted. The results show that the hollow-block protective facings have a significant weakening effect on the reflected wave height, wave run-up, and wave force when the wave is moderate, which is important for the safety of seawall and onshore building structures. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07490208
Volume :
38
Issue :
1
Database :
Complementary Index
Journal :
Journal of Coastal Research
Publication Type :
Academic Journal
Accession number :
154463362
Full Text :
https://doi.org/10.2112/JCOASTRES-D-21-00013.1