Solution and domain decomposition model for marine hydrodynamics: rans and potential flow coupling

Carregant...
Miniatura
El pots comprar en digital a:
El pots comprar en paper a:

Projectes de recerca

Unitats organitzatives

Número de la revista

Títol de la revista

ISSN de la revista

Títol del volum

Cita com:

Col·laborador

Editor

Tribunal avaluador

Realitzat a/amb

Càtedra / Departament / Institut

Tipus de document

Text en actes de congrés

Data publicació

Editor

CIMNE

Part de

Condicions d'accés

Accés obert

Llicència

Tots els drets reservats. Aquesta obra està protegida pels drets de propietat intel·lectual i industrial corresponents. Sense perjudici de les exempcions legals existents, queda prohibida la seva reproducció, distribució, comunicació pública o transformació sense l'autorització de la persona titular dels drets

Assignatures relacionades

Assignatures relacionades

Datasets relacionats

Datasets relacionats

Projecte CCD

Abstract

This paper presents a CFD decomposition model for free surface, viscous, in-

compressible flows related to marine hydrodynamics. The solution decomposition is based

on Spectral Wave Explicit Navier Stokes Equations (SWENSE), where the primitive vari- ables are written as the combination of incident and diffracted fields. This allows efficient coupling of the discretised Navier–Stokes free surface flow equations with arbitrary poten- tial flow theories. The domain decomposition is achieved with implicit relaxation zones in order to prevent undesirable wave reflection in unbounded domains. Interface captur- ing is obtained with
implicitly redistanced Level Set (LS) method derived from Phase Field equation. This approach removes the need to redistance the LS field using conven- tional redistancing procedures and reduces mass conservation issues fundamental to the LS method. The numerical model is based on a polyhedral, second-order accurate, col- located finite volume method (FVM). The coupling of primitive variables is obtained via segregated solution algorithm based on SIMPLE and PISO. The model is implemented in OpenFOAM. The verification of the model is performed by a number of two–dimensional (2–D) test cases. The reflection analysis is carried out by changing the relaxation zone length. Mass conservation and preservation of the signed distance LS function is demon- strated with a simulation lasting 50 incident wave periods. A long domain simulation is also carried out to show that the damping of the wave does not occur. Finally, a wave steepness study has been carried out by changing wave height while the wave period was kept fixed.
Three–dimensional (3–D) test cases regarding higher order forces on circular cylinder have also been carried out. However, the results will be presented in future work.

Descripció

Document relacionat

Citació

Vukcevic, V.; Jasak, H.; Malenica, S. Solution and domain decomposition model for marine hydrodynamics: rans and potential flow coupling. A: MARINE VI. "MARINE VI : proceedings of the VI International Conference on Computational Methods in Marine Engineering". CIMNE, 2015, p. 903-918. ISBN 978-84-943928-6-3.

Ajut

Forma part

DOI

Dipòsit legal

ISBN

978-84-943928-6-3

ISSN

Versió de l'editor

Altres identificadors

Referències