Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks

Ships at sea almost invariably carry liquids onboard, and liquids are contained in appropriate tanks. Being able to take into account the effects of liquids onboard when predicting ship motions is, therefore, of utmost importance for the safe operation of a vessel. In certain conditions, such predic...

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Published in:Volume 1: Offshore Technology; Offshore Geotechnics
Main Authors: Cercos Pita, Jose Luis, Souto Iglesias, Antonio, BULIAN, GABRIELE
Other Authors: Various Authors, Cercos Pita, Jose Lui, Bulian, Gabriele
Format: Conference Object
Language:English
Published: American Society of Mechanical Engineers (ASME) 2015
Subjects:
Online Access:http://hdl.handle.net/11368/2862850
https://doi.org/10.1115/OMAE2015-42048
http://www.asmedl.org/journals/doc/ASMEDL-home/proc/
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author Cercos Pita, Jose Luis
Souto Iglesias, Antonio
BULIAN, GABRIELE
author2 Various Authors
Cercos Pita, Jose Lui
Bulian, Gabriele
Souto Iglesias, Antonio
author_facet Cercos Pita, Jose Luis
Souto Iglesias, Antonio
BULIAN, GABRIELE
author_sort Cercos Pita, Jose Luis
collection Università degli studi di Trieste: ArTS (Archivio della ricerca di Trieste)
container_title Volume 1: Offshore Technology; Offshore Geotechnics
description Ships at sea almost invariably carry liquids onboard, and liquids are contained in appropriate tanks. Being able to take into account the effects of liquids onboard when predicting ship motions is, therefore, of utmost importance for the safe operation of a vessel. In certain conditions, such predictions also require taking into account nonlinearities in both ship motions and in the internal flow, and linear approaches are not sufficient. Within this context, the present paper describes a simulation approach where a blended 6-DOF nonlinear ship motions prediction solver handling the external fluid-ship interaction, is coupled with a Smoothed-Particle-Hydrodynamics (SPH) solver for simulating the internal flow tank dynamics. The solvers are described and an example application is reported.
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ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2015
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spelling ftunitriestiris:oai:arts.units.it:11368/2862850 2025-01-16T19:52:26+00:00 Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks Cercos Pita, Jose Luis Souto Iglesias, Antonio BULIAN, GABRIELE Various Authors Cercos Pita, Jose Lui Bulian, Gabriele Souto Iglesias, Antonio 2015 ELETTRONICO http://hdl.handle.net/11368/2862850 https://doi.org/10.1115/OMAE2015-42048 http://www.asmedl.org/journals/doc/ASMEDL-home/proc/ eng eng American Society of Mechanical Engineers (ASME) country:USA place:New York info:eu-repo/semantics/altIdentifier/isbn/9780791856475 info:eu-repo/semantics/altIdentifier/wos/WOS:000379706800039 ispartofbook:Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering - OMAE ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2015 volume:1 firstpage:- lastpage:- numberofpages:11 http://hdl.handle.net/11368/2862850 doi:10.1115/OMAE2015-42048 info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84947711807 http://www.asmedl.org/journals/doc/ASMEDL-home/proc/ info:eu-repo/semantics/closedAccess ship motion sloshing roll co-simulation sph blended codes info:eu-repo/semantics/conferenceObject 2015 ftunitriestiris https://doi.org/10.1115/OMAE2015-42048 2023-04-09T06:13:10Z Ships at sea almost invariably carry liquids onboard, and liquids are contained in appropriate tanks. Being able to take into account the effects of liquids onboard when predicting ship motions is, therefore, of utmost importance for the safe operation of a vessel. In certain conditions, such predictions also require taking into account nonlinearities in both ship motions and in the internal flow, and linear approaches are not sufficient. Within this context, the present paper describes a simulation approach where a blended 6-DOF nonlinear ship motions prediction solver handling the external fluid-ship interaction, is coupled with a Smoothed-Particle-Hydrodynamics (SPH) solver for simulating the internal flow tank dynamics. The solvers are described and an example application is reported. Conference Object Arctic Università degli studi di Trieste: ArTS (Archivio della ricerca di Trieste) Volume 1: Offshore Technology; Offshore Geotechnics
spellingShingle ship motion
sloshing
roll
co-simulation
sph
blended codes
Cercos Pita, Jose Luis
Souto Iglesias, Antonio
BULIAN, GABRIELE
Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title_full Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title_fullStr Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title_full_unstemmed Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title_short Time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
title_sort time domain assessment of nonlinear coupled ship motions and sloshing in free surface tanks
topic ship motion
sloshing
roll
co-simulation
sph
blended codes
topic_facet ship motion
sloshing
roll
co-simulation
sph
blended codes
url http://hdl.handle.net/11368/2862850
https://doi.org/10.1115/OMAE2015-42048
http://www.asmedl.org/journals/doc/ASMEDL-home/proc/