Lattice Boltzmann method for variable viscous fluid flow on spherical surface

  • Yang, Junxiang
  • Kang, Seungyoon
  • Hwang, Youngjin
  • Kwak, Soobin
  • Ham, Seokjun
  • ... Kim, Junseok
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초록

We propose an efficient numerical method for an incompressible fluid flow with variable viscosity on spherical surface. The proposed computational scheme is based on a finite volume lattice Boltzmann method (FVLBM). The spherical surface is triangulated and each point on the triangular mesh is assigned to one of two values of variable viscosity. Simplified coastlines using interpolation makes our proposed method highly efficient for solving fluid flows. Using the proposed algorithm, we simulate various fluid flows over inhomogeneous domains, i.e., land and sea areas. We apply different viscosity values for each domain using different relaxation times based on position of node points. Moreover, the progression of the storm is examined to demonstrate the effectiveness of the proposed approach.

키워드

Variable viscositySurface lattice Boltzmann methodSpherical surfaceMIXED CONVECTION2-PHASE FLOWNANOFLUIDSCHEME
제목
Lattice Boltzmann method for variable viscous fluid flow on spherical surface
저자
Yang, JunxiangKang, SeungyoonHwang, YoungjinKwak, SoobinHam, SeokjunKim, Junseok
DOI
10.1016/j.enganabound.2024.105781
발행일
2024-08
유형
Article
저널명
Engineering Analysis with Boundary Elements
165