FSI問題のためのレベルセット仮想粒子による滑り無し条件を考慮した界面処理

Translated title of the contribution: Interface treatment with no-slip condition using level set virtual particles for fluid-structure interaction

橋本 学, 小野 謙二

Research output: Contribution to journalArticle

Abstract

We have proposed a fluid-structure coupling approach based on fixed mesh using the level set function to analyze FSI (Fluid-Structure Interaction) problems of compressible inviscid flow and large-deformable thin shell. In this approach, we introduce interface treatment using virtual particles with the level sets and structural normal velocities in order to enforce the continuity of normal velocity at the interface on a fluid fixed mesh. In this study, it is shown that the present method is also applicable to FSI problems of incompressible viscous fluid and thin shell. Then the virtual particles also possess the structural tangent velocities to impose no-slip condition at the interface. We deal with FSI problems with finite deformation and compare the numerical results of the present method and the ALE (Arbitrary Lagrangian-Eulerian) moving mesh based scheme quantitatively.
Original languageJapanese
Pages (from-to)197-197
Number of pages1
Journal理論応用力学講演会 講演論文集
Volume58
Issue number0
DOIs
Publication statusPublished - 2009

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Fluid structure interaction
Fluids
Compressible flow

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title = "FSI問題のためのレベルセット仮想粒子による滑り無し条件を考慮した界面処理",
abstract = "We have proposed a fluid-structure coupling approach based on fixed mesh using the level set function to analyze FSI (Fluid-Structure Interaction) problems of compressible inviscid flow and large-deformable thin shell. In this approach, we introduce interface treatment using virtual particles with the level sets and structural normal velocities in order to enforce the continuity of normal velocity at the interface on a fluid fixed mesh. In this study, it is shown that the present method is also applicable to FSI problems of incompressible viscous fluid and thin shell. Then the virtual particles also possess the structural tangent velocities to impose no-slip condition at the interface. We deal with FSI problems with finite deformation and compare the numerical results of the present method and the ALE (Arbitrary Lagrangian-Eulerian) moving mesh based scheme quantitatively.",
author = "学 橋本 and 謙二 小野",
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T1 - FSI問題のためのレベルセット仮想粒子による滑り無し条件を考慮した界面処理

AU - 橋本, 学

AU - 小野, 謙二

PY - 2009

Y1 - 2009

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AB - We have proposed a fluid-structure coupling approach based on fixed mesh using the level set function to analyze FSI (Fluid-Structure Interaction) problems of compressible inviscid flow and large-deformable thin shell. In this approach, we introduce interface treatment using virtual particles with the level sets and structural normal velocities in order to enforce the continuity of normal velocity at the interface on a fluid fixed mesh. In this study, it is shown that the present method is also applicable to FSI problems of incompressible viscous fluid and thin shell. Then the virtual particles also possess the structural tangent velocities to impose no-slip condition at the interface. We deal with FSI problems with finite deformation and compare the numerical results of the present method and the ALE (Arbitrary Lagrangian-Eulerian) moving mesh based scheme quantitatively.

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DO - 10.11345/japannctam.58.0.197.0

M3 - 記事

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JO - 理論応用力学講演会 講演論文集

JF - 理論応用力学講演会 講演論文集

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