Javascript must be enabled to continue!
FORCES INDUCED ON A VERTICAL BREAKWATER BY INCIDENT OBLIQUE WAVES
View through CrossRef
Over the last years Navier-Stokes numerical models have been developed to accurately simulate wave interaction with all kinds of coastal structures, focusing on both functionality and stability of coastal structures. Although several models have been used to simulate wave interaction with coastal structures in two dimensions (2DV) there are a vast number of three-dimensional effects that need to be investigated in order to improve the design. In this paper a new model called IH-FOAM has been applied to study a vertical breakwater at prototype scale. As a first attempt of validation, the model has been used to simulate a regular wave train generated with a relative angle with the breakwater inducing three-dimensional wave patterns not only seaward the structure due to reflection but also generating an overtopping discharge variation along the breakwater trunk. Pressure laws and overtopping discharge at three different cross-sections along the structure have been studied. The pressure laws have been compared with classical Goda's formulation. Although, the numerical model predictions are in accordance with Goda's calculations, a clear three-dimensional variability of wave-induced pressure has been observed. Moreover, an additional study has been performed calculating pressure laws on the side-wall at the breakwater head. Large three-dimensional effects are detected from the simulations due to the flow separation at that area. Overtopping model predictions have been compared with Overtopping Manual calculations showing very close values along the trunk. However, lower overtopping discharge values are observed at the breakwater head. This paper is a preliminary work to show the range of applicability of a three-dimensional Navier-Stokes model to study wave interaction with a vertical breakwater under the action of an oblique wave train.
Coastal Engineering Research Council
Title: FORCES INDUCED ON A VERTICAL BREAKWATER BY INCIDENT OBLIQUE WAVES
Description:
Over the last years Navier-Stokes numerical models have been developed to accurately simulate wave interaction with all kinds of coastal structures, focusing on both functionality and stability of coastal structures.
Although several models have been used to simulate wave interaction with coastal structures in two dimensions (2DV) there are a vast number of three-dimensional effects that need to be investigated in order to improve the design.
In this paper a new model called IH-FOAM has been applied to study a vertical breakwater at prototype scale.
As a first attempt of validation, the model has been used to simulate a regular wave train generated with a relative angle with the breakwater inducing three-dimensional wave patterns not only seaward the structure due to reflection but also generating an overtopping discharge variation along the breakwater trunk.
Pressure laws and overtopping discharge at three different cross-sections along the structure have been studied.
The pressure laws have been compared with classical Goda's formulation.
Although, the numerical model predictions are in accordance with Goda's calculations, a clear three-dimensional variability of wave-induced pressure has been observed.
Moreover, an additional study has been performed calculating pressure laws on the side-wall at the breakwater head.
Large three-dimensional effects are detected from the simulations due to the flow separation at that area.
Overtopping model predictions have been compared with Overtopping Manual calculations showing very close values along the trunk.
However, lower overtopping discharge values are observed at the breakwater head.
This paper is a preliminary work to show the range of applicability of a three-dimensional Navier-Stokes model to study wave interaction with a vertical breakwater under the action of an oblique wave train.
Related Results
=== PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === Knowledge of the Problem and Intention to Act on Student Environmentally Responsible Behavior
=== PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === Knowledge of the Problem and Intention to Act on Student Environmentally Responsible Behavior
<p><span lang="IN"><span style="vertical-align: inherit;"><span style="vertical-align: inherit;">=== PAPER RETRACTED === </span></span></span...
PENGARUH KEMIRINGAN GRADIEN SUBMERGED BREAKWATER TERHADAP GELOMBANG DATANG
PENGARUH KEMIRINGAN GRADIEN SUBMERGED BREAKWATER TERHADAP GELOMBANG DATANG
Sebagian besar pantai di sisi barat pulau Sumatera merupakan pantai wisata. Keindahan pantai dapat meningkatkan perekonomian masyarakat ternyata diikuti oleh ancaman gelombang swel...
Karakteristik Gelombang Laut pada Rencana Pembangunan Breakwater di Pelabuhan Tanjung Adikarto
Karakteristik Gelombang Laut pada Rencana Pembangunan Breakwater di Pelabuhan Tanjung Adikarto
ABSTRAKDesain breakwater pada pembangunan Pelabuhan Tanjung Adikarto telah beberapa kali mengalami perubahan sejak tahun 2003. Pelaksanaan konstruksi breakwater sisi barat dan sisi...
RANCANG BANGUN APLIKASI PENGENALAN BUDAYA WAKATOBI BERBASIS ANDROID
RANCANG BANGUN APLIKASI PENGENALAN BUDAYA WAKATOBI BERBASIS ANDROID
<p><em><span style="vertical-align: inherit;"><span style="vertical-align: inherit;"><span style="vertical-align: inherit;"><span style="vertical-a...
Interaction of gravitational waves with permeable breakwater
Interaction of gravitational waves with permeable breakwater
A method for calculating the parameters of gravitational waves that interact with vertical permeable breakwaters, based on potential theory, has been developed and presented. The w...
PERENCANAAN STRUKTUR DINDING PENAHAN TANAH SETRA TUNON DESA ADAT PEJATEN, KECAMATAN KEDIRI, KABUPATEN TABANAN, BALI
PERENCANAAN STRUKTUR DINDING PENAHAN TANAH SETRA TUNON DESA ADAT PEJATEN, KECAMATAN KEDIRI, KABUPATEN TABANAN, BALI
<em><span style="vertical-align: inherit;"><span style="vertical-align: inherit;"><span style="vertical-align: inherit;"><span style="vertical-align: inh...
FLOATING BREAKWATER RESPONSE TO WAVE ACTION
FLOATING BREAKWATER RESPONSE TO WAVE ACTION
The present paper describes a study carried out to investigate floating breakwater behavior in waves. Components of the study include a field survey of floating breakwaters in Brit...
Experimental Research on the Hydrodynamic Performance of Wave Energy Converter Combined with Floating Breakwater
Experimental Research on the Hydrodynamic Performance of Wave Energy Converter Combined with Floating Breakwater
The cost and safety issues of the wave energy converter (WEC) are bottlenecks which restricts widely application of the wave energy. The combination of WEC and breakwater is one of...

