Volume 24 Issue 6
Jun.  1998
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Liu Yu, Zhang Zhenpeng. Implicit Flux-Vector-Splitting Solution of Three Dimensional Parabolic Navier-Stokes Equations[J]. Journal of Beijing University of Aeronautics and Astronautics, 1998, 24(6): 629-632. (in Chinese)
Citation: Liu Yu, Zhang Zhenpeng. Implicit Flux-Vector-Splitting Solution of Three Dimensional Parabolic Navier-Stokes Equations[J]. Journal of Beijing University of Aeronautics and Astronautics, 1998, 24(6): 629-632. (in Chinese)

Implicit Flux-Vector-Splitting Solution of Three Dimensional Parabolic Navier-Stokes Equations

  • Received Date: 09 Jun 1998
  • Publish Date: 30 Jun 1998
  • By the use of implicit flux-vector-splitting method, three-dimensional dimensionless conservative parabolic navier-stokes equation is solved in general curved coordinates system. The code developed can be used to solve the three-dimensional flow field with comparatively complex boundary such as the flow field that subsonic, transonic and supersonic flows appear in it, the flow field that internal and external flows exist together and their mixing wake flow with multi-blocks. An axisymmetric sub-tran-supersonic internal flow field solution of a nozzle is given here including computational grid, flow vector profile, pressure, temperature and Mach number contour line distribution. An inner and outer flow field solution of a nozzle and its mixing wake flow is also presented inside being compose of computational grid, flow vector profile, dimensionless pressure, density and temperature contour line distribution.

     

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  • 1. Baldiwin B S,Lomax H.Thin layer approximation and algebraic model for separated turbulent flows. AIAA Paper 78-257, 1978 2. Thomas P D. Numerical method for predicting flow characteristics and performance of nonaxisymmetric nozzles. NASA CR-3147,1979 3. Thomas P D. Numerical method for predicting flow characteristics and performance of nonaxisymmetric nozzles. NASA CR-3264, 1979 4. Kronzon Y, Lyan-Chang C, Merkle C L. Gas flows in rocket motors. AD-A213348, AD-A213349,1989
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