Hydrodynamic Performance of an F-Shaped Fixed Breakwater with Side Plates Under Oblique Wave Incidence

F-shaped fixed breakwaters have recently been introduced as an asymmetric configuration with the potential to improve wave attenuation without substantially increasing the overall structural dimensions. In the present study, the hydrodynamic performance of conventional and side-plate-assisted F-shaped breakwaters is numerically investigated under regular oblique waves using a three-dimensional Boundary Element Method (BEM). A comprehensive parametric analysis is conducted to examine the effects of wave incidence angle, structural length, draft depth, and the distribution of the prescribed draft between the main structural body and side plates. The hydrodynamic response is evaluated in terms of local wave transmission, wave-induced diffraction forces, and diffraction-induced moments. The results show that the side-plate-assisted configuration provides the lowest local transmission coefficients among the investigated rectangular, solid F-shaped, and side-plate-assisted F-shaped configurations, particularly in the intermediate- and high-frequency ranges. Relative to the solid F-shaped configuration, the side-plate-assisted cases exhibit average increases of approximately 27% in the horizontal diffraction force, 44% in the vertical diffraction force, and 52–56% in the diffraction-induced moment over the investigated structural lengths.

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Publication Details

Journal
Journal of Marine Science and Engineering
Published
2026-09-24
DOI
https://doi.org/10.3390/jmse14191783
Primary Topic
Wave and Wind Energy Systems
Type
article
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article

Hydrodynamic Performance of an F-Shaped Fixed Breakwater with Side Plates Under Oblique Wave Incidence

Giacomo Viccione, Meisam Qorbani Fouladi, Pouya Khoshnazari, Maryam Taghizadeh Khalili
Journal of Marine Science and Engineering
Wave and Wind Energy Systems
article

Hydrodynamic Performance of an F-Shaped Fixed Breakwater with Side Plates Under Oblique Wave Incidence

Giacomo Viccione, Meisam Qorbani Fouladi, Pouya Khoshnazari, Maryam Taghizadeh Khalili
article en

Abstract

F-shaped fixed breakwaters have recently been introduced as an asymmetric configuration with the potential to improve wave attenuation without substantially increasing the overall structural dimensions. In the present study, the hydrodynamic performance of conventional and side-plate-assisted F-shaped breakwaters is numerically investigated under regular oblique waves using a three-dimensional Boundary Element Method (BEM). A comprehensive parametric analysis is conducted to examine the effects of wave incidence angle, structural length, draft depth, and the distribution of the prescribed draft between the main structural body and side plates. The hydrodynamic response is evaluated in terms of local wave transmission, wave-induced diffraction forces, and diffraction-induced moments. The results show that the side-plate-assisted configuration provides the lowest local transmission coefficients among the investigated rectangular, solid F-shaped, and side-plate-assisted F-shaped configurations, particularly in the intermediate- and high-frequency ranges. Relative to the solid F-shaped configuration, the side-plate-assisted cases exhibit average increases of approximately 27% in the horizontal diffraction force, 44% in the vertical diffraction force, and 52–56% in the diffraction-induced moment over the investigated structural lengths.

Journal of Marine Science and EngineeringVol. 14(19)
University of Salerno (IT), University of Science and Technology of Mazandaran (IR)
Clean water and sanitation
Openalex Percentile: Top 15%
Wave and Wind Energy Systems
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Hydrodynamic Performance of an F-Shaped Fixed Breakwater with Side Plates Under Oblique Wave Incidence — Giacomo Viccione, Meisam Qorbani Fouladi, et al. · Journal of Marine Science and Engineering (2026) | TGRS Research Map | TGRS