Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests

Forecasting the hydrodynamic properties of a ship is crucial for assessing its maneuvering capabilities. This study presents the results of static drift and circular motion simulations conducted on a 37000 tdw chemical tanker. The calculations were carried out using the ISIS-CFD solver, accessible t...

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Main Authors: Florentin Daniel Popa, Radu Bosoancă
Format: Article
Language:English
Published: Galati University Press 2023-12-01
Series:Annals of "Dunărea de Jos" University of Galaţi: Fascicle XI Shipbuilding
Subjects:
Online Access:https://www.gup.ugal.ro/ugaljournals/index.php/fanship/article/view/6289
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author Florentin Daniel Popa
Radu Bosoancă
author_facet Florentin Daniel Popa
Radu Bosoancă
author_sort Florentin Daniel Popa
collection DOAJ
description Forecasting the hydrodynamic properties of a ship is crucial for assessing its maneuvering capabilities. This study presents the results of static drift and circular motion simulations conducted on a 37000 tdw chemical tanker. The calculations were carried out using the ISIS-CFD solver, accessible through the FineTM/Marine academic license provided by NUMECA. The flow solution was obtained by numerically solving the Reynolds-Averaged Navier Stokes equations, employing the k-ω Shear Stress Transport (SST) model to represent turbulence. The simulation results were used to determine the linear hydrodynamic derivatives, which were then compared with hydrodynamic derivatives estimated with empirical formulas proposed by Clarke et. al. [1] and Tribon Initial Design module in the absence of experimental results.
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spelling doaj.art-8029b442874e4e27bb03a251aace73f22023-12-28T08:38:04ZengGalati University PressAnnals of "Dunărea de Jos" University of Galaţi: Fascicle XI Shipbuilding1221-46202668-31562023-12-0146111810.35219/AnnUgalShipBuilding/2023.46.026289Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model testsFlorentin Daniel Popa0Radu Bosoancă1“Dunarea de Jos” University of Galati“Dunarea de Jos” University of GalatiForecasting the hydrodynamic properties of a ship is crucial for assessing its maneuvering capabilities. This study presents the results of static drift and circular motion simulations conducted on a 37000 tdw chemical tanker. The calculations were carried out using the ISIS-CFD solver, accessible through the FineTM/Marine academic license provided by NUMECA. The flow solution was obtained by numerically solving the Reynolds-Averaged Navier Stokes equations, employing the k-ω Shear Stress Transport (SST) model to represent turbulence. The simulation results were used to determine the linear hydrodynamic derivatives, which were then compared with hydrodynamic derivatives estimated with empirical formulas proposed by Clarke et. al. [1] and Tribon Initial Design module in the absence of experimental results.https://www.gup.ugal.ro/ugaljournals/index.php/fanship/article/view/6289manoeuvrability, hydrodynamic derivatives, cfd
spellingShingle Florentin Daniel Popa
Radu Bosoancă
Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
Annals of "Dunărea de Jos" University of Galaţi: Fascicle XI Shipbuilding
manoeuvrability, hydrodynamic derivatives, cfd
title Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
title_full Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
title_fullStr Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
title_full_unstemmed Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
title_short Estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
title_sort estimation of linear hydrodynamic derivatives of a 37000 tdw chemical tanker using virtual captive model tests
topic manoeuvrability, hydrodynamic derivatives, cfd
url https://www.gup.ugal.ro/ugaljournals/index.php/fanship/article/view/6289
work_keys_str_mv AT florentindanielpopa estimationoflinearhydrodynamicderivativesofa37000tdwchemicaltankerusingvirtualcaptivemodeltests
AT radubosoanca estimationoflinearhydrodynamicderivativesofa37000tdwchemicaltankerusingvirtualcaptivemodeltests