A 3-dimensional Rankine source panel method for simulating a rigid floating body in steep waves is being developed. The aim is to obtain the same quality as free-surface RANSE methods, which are well suited for this application, but to require only a small fraction of the computing time needed by RANSE methods. The body may have forward speed or perform maneuvering motions. The exact boundary conditions are satisfied at the actual location of the fluid boundaries. The waves are generated not by a material wave maker, but by an approximate wave potential which needs not satisfy the exact free-surface condition. No wave damping regions are required. Whereas for steep waves without a body the method appears satisfactory, it needs further improvements if a body is present.
Skip Nav Destination
ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering
July 1–6, 2012
Rio de Janeiro, Brazil
Conference Sponsors:
- Ocean, Offshore and Arctic Engineering Division
ISBN:
978-0-7918-4491-5
PROCEEDINGS PAPER
Towards Fully Non-Linear Floating Body Simulations by a Potential Method
Heinrich Söding
Heinrich Söding
Technical University Hamburg-Harburg, Hamburg, Germany
Search for other works by this author on:
Heinrich Söding
Technical University Hamburg-Harburg, Hamburg, Germany
Paper No:
OMAE2012-83554, pp. 539-549; 11 pages
Published Online:
August 23, 2013
Citation
Söding, H. "Towards Fully Non-Linear Floating Body Simulations by a Potential Method." Proceedings of the ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering. Volume 4: Offshore Geotechnics; Ronald W. Yeung Honoring Symposium on Offshore and Ship Hydrodynamics. Rio de Janeiro, Brazil. July 1–6, 2012. pp. 539-549. ASME. https://doi.org/10.1115/OMAE2012-83554
Download citation file:
9
Views
Related Proceedings Papers
Related Articles
Response Mitigation of Floating Platform by Porous-Media-Tuned Liquid Dampers
J. Offshore Mech. Arct. Eng (October,2023)
Second-Order Diffraction and Radiation of a Floating Body With Small Forward Speed
J. Offshore Mech. Arct. Eng (February,2013)
On the Interaction of Waves With Intake/Discharge Flows Originating From a Freely-Floating Body
J. Offshore Mech. Arct. Eng (February,2003)
Related Chapters
Damping of Cylindrical Structures in Single-Phase Fluids
Flow-Induced Vibration Handbook for Nuclear and Process Equipment
Introduction
Introduction to Finite Element, Boundary Element, and Meshless Methods: With Applications to Heat Transfer and Fluid Flow
Polycrystalline Simulations of In-Reactor Deformation of Zircaloy-4 Cladding Tubes during Nominal Operating Conditions
Zirconium in the Nuclear Industry: 20th International Symposium