Harbors are important infrastructures for an offshore production chain. These harbors are protected from the actions of sea by breakwaters to ensure safe loading, unloading of vessels and also to protect the infrastructure. In current literature, research regarding the design of these structures is majorly based on physical model tests. In this study a new tool, a three-dimensional (3D) numerical model is introduced. The open-source computational fluid dynamics (CFD) model REEF3D is used to study the design of berm breakwaters. The model uses the Volume-averaged Reynolds-averaged Navier-Stokes (VRANS) equations to solve the porous flows. At first, the VRANS approach in REEF3D is validated for flow through porous media. A dam break case is simulated and comparisons are made for the free surface both inside and outside the porous medium. The numerical model REEF3D is applied to show how to extend the database obtained with purely numerical results, simulating different structural alternatives for the berm in a berm breakwater. Different simulations are conducted with varying berm geometry. The influence of the berm geometry on the pore pressure and velocities are studied. The resulting optimal berm geometry is compared to the geometry according to empirical formulations.
Skip Nav Destination
Article navigation
February 2019
Research-Article
Numerical Modeling of Berm Breakwater Optimization With Varying Berm Geometry Using REEF3D
Athul Sasikumar,
Athul Sasikumar
Coastal Engineering Norconsult AS,
Klæbuveien,
Trondheim 7031, Norway
e-mail: athul.sasikumar@norconsult.com
Klæbuveien,
Trondheim 7031, Norway
e-mail: athul.sasikumar@norconsult.com
Search for other works by this author on:
Arun Kamath,
Arun Kamath
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: arun.kamath@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: arun.kamath@ntnu.no
Search for other works by this author on:
Onno Musch,
Onno Musch
Coastal Engineering Norconsult AS,
Klæbuveien,
Trondheim 7031, Norway
e-mail: onno.musch@norconsult.com
Klæbuveien,
Trondheim 7031, Norway
e-mail: onno.musch@norconsult.com
Search for other works by this author on:
Hans Bihs,
Hans Bihs
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: hans.bihs@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: hans.bihs@ntnu.no
Search for other works by this author on:
Øivind A. Arntsen
Øivind A. Arntsen
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: oivind.arnsten@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: oivind.arnsten@ntnu.no
Search for other works by this author on:
Athul Sasikumar
Coastal Engineering Norconsult AS,
Klæbuveien,
Trondheim 7031, Norway
e-mail: athul.sasikumar@norconsult.com
Klæbuveien,
Trondheim 7031, Norway
e-mail: athul.sasikumar@norconsult.com
Arun Kamath
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: arun.kamath@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: arun.kamath@ntnu.no
Onno Musch
Coastal Engineering Norconsult AS,
Klæbuveien,
Trondheim 7031, Norway
e-mail: onno.musch@norconsult.com
Klæbuveien,
Trondheim 7031, Norway
e-mail: onno.musch@norconsult.com
Hans Bihs
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: hans.bihs@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: hans.bihs@ntnu.no
Øivind A. Arntsen
Department of Civil and Environmental
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: oivind.arnsten@ntnu.no
Engineering,
Norwegian University of Science and
Technology,
Trondheim 7491, Norway
e-mail: oivind.arnsten@ntnu.no
1Corresponding author.
Contributed by the Ocean, Offshore, and Arctic Engineering Division of ASME for publication in the JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING. Manuscript received September 13, 2017; final manuscript received June 4, 2018; published online August 13, 2018. Assoc. Editor: Xi-Ying Zhang.
J. Offshore Mech. Arct. Eng. Feb 2019, 141(1): 011801 (10 pages)
Published Online: August 13, 2018
Article history
Received:
September 13, 2017
Revised:
June 4, 2018
Citation
Sasikumar, A., Kamath, A., Musch, O., Bihs, H., and Arntsen, Ø. A. (August 13, 2018). "Numerical Modeling of Berm Breakwater Optimization With Varying Berm Geometry Using REEF3D." ASME. J. Offshore Mech. Arct. Eng. February 2019; 141(1): 011801. https://doi.org/10.1115/1.4040508
Download citation file:
Get Email Alerts
Cited By
Efficient Project Planning for Floating Offshore Wind Farm Development
J. Offshore Mech. Arct. Eng
The Scattering of Water Waves by M-Floating Porous Plates Over (M − 1) Trenches
J. Offshore Mech. Arct. Eng (December 2025)
Guest Editorial: Special Issue on Maritime Transport
J. Offshore Mech. Arct. Eng
Influence of Fiber Orientation and Material Anisotropy in Hydroelastic Response of Laminated Composite Cycloidal Propeller Blade
J. Offshore Mech. Arct. Eng (December 2025)
Related Articles
Numerical Modeling of Laminar Pulsating Flow in Porous Media
J. Fluids Eng (April,2009)
Investigation of Dam-Break Flow Over Abruptly Contracting Channel With Trapezoidal-Shaped Lateral Obstacles
J. Fluids Eng (August,2012)
Numerical Modeling Using a Quasi-Three-Dimensional Procedure for Large Power Plant Condensers
J. Heat Transfer (February,1994)
Flows Through Real Porous Media: X-Ray Computed Tomography, Experiments, and Numerical Simulations
J. Fluids Eng (April,2014)
Related Proceedings Papers
Related Chapters
Application of MIKE21-BW Model in the General Arrangement of a Fish Porjt
International Conference on Advanced Computer Theory and Engineering, 4th (ICACTE 2011)
Hydro Power: Global and North American Perspectives
Hydro, Wave and Tidal Energy Applications
Hydro Power Africa
Hydro, Wave and Tidal Energy Applications