Direct Simulation of Acoustic Sound by the Finite Difference Lattice Boltzmann Method

차분격자볼츠만법에 의한 유체음의 직접계산

  • 강호근 (경상대학교 기계항공공학부) ;
  • 노기덕 (경상대학교 기계항공공학부) ;
  • 이영호 (한국해양대학교 기계 정보공학부)
  • Published : 2003.04.23

Abstract

In this research, the simulation method for acoustic sounds by a uniform flow around a two-dimensional circular cylinder by using the finite difference lattice Boltzmann model is explained. To begin with, we examine the boundary condition which determined with the distribution function $f_i^{(0)}$ concerning with density, velocity and internal energy at boundary node. Very small acoustic pressure fluctuation, with same frequency as that of Karman vortex street, is compared with the pressure fluctuation around a circular cylinder. The acoustic sound' propagation velocity shows that acoustic approa ching the upstream, due to the Doppler effect in the uniform flow, slowly propagated. For the do wnstream, on the other hand, it quickly propagates. It is also apparently the size of sound pressure was proportional to the central distance $r^{-1/2}$ of the circular cylinder. The lattice BGK model for compressible fluids is shown to be one of powerful tool for simulation of gas flows.

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