中国物理B ›› 2004, Vol. 13 ›› Issue (12): 1992-1998.doi: 10.1088/1009-1963/13/12/003

• GENERAL • 上一篇    下一篇

Application of the high-resolution Godunov method to the multi-fluid flow calculations

柏劲松, 李平, 张展冀, 华劲松, 谭华   

  1. Institute of Fluid Physics, China Academy of Engineer Physics, Mianyang 621900, China
  • 收稿日期:2004-03-02 修回日期:2004-07-01 出版日期:2005-03-17 发布日期:2005-03-17
  • 基金资助:
    Project supported by the Foundation of China Academy of Engineering Physics (Gtant No 20040650).

Application of the high-resolution Godunov method to the multi-fluid flow calculations

Bai Jing-Song (柏劲松), Li Ping (李平), Zhang Zhan-Ji (张展冀), Hua Jing-Song (华劲松), Tan Hua (谭华)   

  1. Institute of Fluid Physics, China Academy of Engineer Physics, Mianyang 621900, China
  • Received:2004-03-02 Revised:2004-07-01 Online:2005-03-17 Published:2005-03-17
  • Supported by:
    Project supported by the Foundation of China Academy of Engineering Physics (Gtant No 20040650).

摘要: In this paper, we have numerically solved the multi-fluid problems using an operator-split two-step high-resolution Godunov PPM (parabolic piecewise method) for the flow in complex geometries. By using the front capturing method, the PPM integrator captures the interface in the solution process. The basic multi-fluid integrator is coupled to a Cartesian grid algorithm where a VOF (volume of fluid) representation of the fluid interface is also used. As an application of this method, we test the 2D interfacial advection example and simulate an experimental hypervelocity launcher model from Sandia National Laboratories. The computational design of the hypervelocity launcher is also given in the paper.

Abstract: In this paper, we have numerically solved the multi-fluid problems using an operator-split two-step high-resolution Godunov PPM (parabolic piecewise method) for the flow in complex geometries. By using the front capturing method, the PPM integrator captures the interface in the solution process. The basic multi-fluid integrator is coupled to a Cartesian grid algorithm where a VOF (volume of fluid) representation of the fluid interface is also used. As an application of this method, we test the 2D interfacial advection example and simulate an experimental hypervelocity launcher model from Sandia National Laboratories. The computational design of the hypervelocity launcher is also given in the paper.

Key words: high resolution, PPM, multi-fluid, VOF

中图分类号:  (Compressible flows; shock waves)

  • 47.40.-x
47.11.-j (Computational methods in fluid dynamics)