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학술논문한국유체기계학회 논문집2012.06 발행KCI 피인용 1

격자 볼츠만 법의 유체 구조 연성해석 적용에 대한응력 기반 격자 재생성 모델

Stress Based Node Refill Model for Lattice-Boltzmann Method on Fluid-Structure Interaction Problems

신재호(한양대학교); 이주희(호서대학교); 이상환(한양대학교)

15권 3호, 12~18쪽

초록

The Lattice Boltzmann Method has developed for solving the Boltzmann equation in Cartesian domains containing immersed boundaries of arbitrary geometrical complexity moving with prescribed kinematics. When a immersed boundaries are sweeping the fixed fluid node, refilling the node information in a vicinity of fluid nodes is one of the important issues in Lattice Boltzmann Method. In this study, we propose a simple refill algorithm for the particle distribution function based on a proper velocity, density and strain rate to enhance accuracy and stability of the method. The refill scheme based on a asymptotic analysis of LBGK model has improved accuracy than interpolation schemes. The proposed scheme in this study is validated by the simulations of an impulsively started rotating circular cylinder to investigate adaptability for fluid-structure interaction (FSI) problem. This refill scheme has improved stability and accuracy especially at high Reynolds number region.

Abstract

The Lattice Boltzmann Method has developed for solving the Boltzmann equation in Cartesian domains containing immersed boundaries of arbitrary geometrical complexity moving with prescribed kinematics. When a immersed boundaries are sweeping the fixed fluid node, refilling the node information in a vicinity of fluid nodes is one of the important issues in Lattice Boltzmann Method. In this study, we propose a simple refill algorithm for the particle distribution function based on a proper velocity, density and strain rate to enhance accuracy and stability of the method. The refill scheme based on a asymptotic analysis of LBGK model has improved accuracy than interpolation schemes. The proposed scheme in this study is validated by the simulations of an impulsively started rotating circular cylinder to investigate adaptability for fluid-structure interaction (FSI) problem. This refill scheme has improved stability and accuracy especially at high Reynolds number region.

발행기관:
한국유체기계학회
DOI:
http://dx.doi.org/10.5293/kfma.2012.15.3.012
분류:
기계공학

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격자 볼츠만 법의 유체 구조 연성해석 적용에 대한응력 기반 격자 재생성 모델 | 한국유체기계학회 논문집 2012 | AskLaw | 애스크로 AI