4.5 Article

Boundary element method for wave trapping by a multi-layered trapezoidal breakwater near a sloping rigid wall

期刊

MECCANICA
卷 56, 期 2, 页码 317-334

出版社

SPRINGER
DOI: 10.1007/s11012-020-01286-z

关键词

Oblique waves; Wave scattering and trapping; Multi-layered porous structures; Multi-domain boundary element method; Wave energy dissipation

资金

  1. SERB, Department of Science and Technology, Government of India through CRG'' Pgroject [CRG/2018/004521]

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This study developed a numerical model using multi-domain boundary element method to investigate the effects of multiple layers in a rubble mound breakwater on the reflection and dissipation of incoming ocean waves. The study examined hydrodynamics in different configurations and highlighted the influence of armour layers on various structural and wave parameters.
This study examines the multiple layers in a rubble mound breakwater and their effect on reflection and dissipation of incoming ocean waves. The numerical model is developed using multi-domain boundary element method for oblique water wave trapping near a sloping wall by a multi-layered trapezoidal porous structure, which is utilized to model armour, filter and core layers while examining the hydrodynamics in different configurations. Both, the constant element and linear element approaches to boundary element method are discussed. The cases of bottom-standing porous structures as being submerged and fully extended are considered. The wave hydrodynamics over the structure is described by the reflection and dissipation coefficients along with the forces acting on the sloping wall, and is influenced by wave and structural parametrics of the system. The influence of armour layer in different configurations is highlighted for various structural and wave parameters.

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