Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method

The purpose of this study is to find an optimal shape of a body located in viscous flows using the acoustic velocity method. The optimal shape is defined such as to minimize fluid forces acting on the body. The formulation is based on an optimal control theory, in which a performance function is exp...

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Main Authors: Kazuki Terachi, Mutsuto Kawahara
Format: Article
Language:English
Published: SAGE Publishing 2012-06-01
Series:Journal of Algorithms & Computational Technology
Online Access:https://doi.org/10.1260/1748-3018.6.2.299
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spelling doaj-16605d6c4bf8481ebe7ebb25c48ac0e52020-11-25T02:54:29ZengSAGE PublishingJournal of Algorithms & Computational Technology1748-30181748-30262012-06-01610.1260/1748-3018.6.2.299Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity MethodKazuki TerachiMutsuto KawaharaThe purpose of this study is to find an optimal shape of a body located in viscous flows using the acoustic velocity method. The optimal shape is defined such as to minimize fluid forces acting on the body. The formulation is based on an optimal control theory, in which a performance function is expressed by the fluid force. The performance function should be minimized satisfying state equations. Therefore, the optimal control problem results in the minimization problem with constraint conditions. The problem can be transformed into the minimization problem without constraint condition by the adjoint equation method. As the minimization technique, the gradient based method is applied. For the discretization of both state and adjoint equations, the finite element method based on the bubble function is used. The optimal shape in the flow at Reynolds number Re = 50000 can be obtained.https://doi.org/10.1260/1748-3018.6.2.299
collection DOAJ
language English
format Article
sources DOAJ
author Kazuki Terachi
Mutsuto Kawahara
spellingShingle Kazuki Terachi
Mutsuto Kawahara
Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
Journal of Algorithms & Computational Technology
author_facet Kazuki Terachi
Mutsuto Kawahara
author_sort Kazuki Terachi
title Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
title_short Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
title_full Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
title_fullStr Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
title_full_unstemmed Shape Optimization of a Body Located in Viscous Flows Using Acoustic Velocity Method
title_sort shape optimization of a body located in viscous flows using acoustic velocity method
publisher SAGE Publishing
series Journal of Algorithms & Computational Technology
issn 1748-3018
1748-3026
publishDate 2012-06-01
description The purpose of this study is to find an optimal shape of a body located in viscous flows using the acoustic velocity method. The optimal shape is defined such as to minimize fluid forces acting on the body. The formulation is based on an optimal control theory, in which a performance function is expressed by the fluid force. The performance function should be minimized satisfying state equations. Therefore, the optimal control problem results in the minimization problem with constraint conditions. The problem can be transformed into the minimization problem without constraint condition by the adjoint equation method. As the minimization technique, the gradient based method is applied. For the discretization of both state and adjoint equations, the finite element method based on the bubble function is used. The optimal shape in the flow at Reynolds number Re = 50000 can be obtained.
url https://doi.org/10.1260/1748-3018.6.2.299
work_keys_str_mv AT kazukiterachi shapeoptimizationofabodylocatedinviscousflowsusingacousticvelocitymethod
AT mutsutokawahara shapeoptimizationofabodylocatedinviscousflowsusingacousticvelocitymethod
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