Hull-form optimization of a container ship based on bell-shaped modification function
In the present study, a hydrodynamic hull-form optimization algorithm for a container ship was presented in terms of the minimum wave-making resistance. Bell-shaped modification functions were developed to modify the original hull-form and a sequential quadratic programming algorithm was used as an...
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2015-05-01
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doaj-6315428d93cc4872aded2f0caa9185b62020-11-25T00:29:15ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822015-05-017347848910.1515/ijnaoe-2015-0034ijnaoe-2015-0034Hull-form optimization of a container ship based on bell-shaped modification functionHee Jong ChoiIn the present study, a hydrodynamic hull-form optimization algorithm for a container ship was presented in terms of the minimum wave-making resistance. Bell-shaped modification functions were developed to modify the original hull-form and a sequential quadratic programming algorithm was used as an optimizer. The wave-making resistance as an objective function was obtained by the Rankine source panel method in which non-linear free surface conditions and the trim and sinkage of the ship were fully taken into account. Numerical computation was performed to investigate the validity and effectiveness of the proposed hull-form modification algorithm for the container carrier. The computational results were validated by comparing them with the experimental data.http://www.sciencedirect.com/science/article/pii/S2092678216300590Hydrodynamic hull-form optimizationBell-shaped modification functionSequential quadratic programming (SQP)Container carrierRankine source panel method |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hee Jong Choi |
spellingShingle |
Hee Jong Choi Hull-form optimization of a container ship based on bell-shaped modification function International Journal of Naval Architecture and Ocean Engineering Hydrodynamic hull-form optimization Bell-shaped modification function Sequential quadratic programming (SQP) Container carrier Rankine source panel method |
author_facet |
Hee Jong Choi |
author_sort |
Hee Jong Choi |
title |
Hull-form optimization of a container ship based on bell-shaped modification function |
title_short |
Hull-form optimization of a container ship based on bell-shaped modification function |
title_full |
Hull-form optimization of a container ship based on bell-shaped modification function |
title_fullStr |
Hull-form optimization of a container ship based on bell-shaped modification function |
title_full_unstemmed |
Hull-form optimization of a container ship based on bell-shaped modification function |
title_sort |
hull-form optimization of a container ship based on bell-shaped modification function |
publisher |
Elsevier |
series |
International Journal of Naval Architecture and Ocean Engineering |
issn |
2092-6782 |
publishDate |
2015-05-01 |
description |
In the present study, a hydrodynamic hull-form optimization algorithm for a container ship was presented in terms of the minimum wave-making resistance. Bell-shaped modification functions were developed to modify the original hull-form and a sequential quadratic programming algorithm was used as an optimizer. The wave-making resistance as an objective function was obtained by the Rankine source panel method in which non-linear free surface conditions and the trim and sinkage of the ship were fully taken into account. Numerical computation was performed to investigate the validity and effectiveness of the proposed hull-form modification algorithm for the container carrier. The computational results were validated by comparing them with the experimental data. |
topic |
Hydrodynamic hull-form optimization Bell-shaped modification function Sequential quadratic programming (SQP) Container carrier Rankine source panel method |
url |
http://www.sciencedirect.com/science/article/pii/S2092678216300590 |
work_keys_str_mv |
AT heejongchoi hullformoptimizationofacontainershipbasedonbellshapedmodificationfunction |
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1725332429533609984 |