Applied Mathematics and Mechanics (English Edition) ›› 1995, Vol. 16 ›› Issue (12): 1209-1220.

• 论文 • 上一篇    下一篇

UNCONDITIONAL STABLE SOLUTIONS OF THE EULER EQUATIONS FORTWO-AND THREE-D WINGS IN ARBITRARY MOTION

高正红   

  1. Northwestern Polytechnical University, Xi'an 710072, P.R.China
  • 收稿日期:1995-01-12 出版日期:1995-12-18 发布日期:1995-12-18
  • 通讯作者: Chien Weizang

UNCONDITIONAL STABLE SOLUTIONS OF THE EULER EQUATIONS FORTWO-AND THREE-D WINGS IN ARBITRARY MOTION

Gao Zhenghong   

  1. Northwestern Polytechnical University, Xi'an 710072, P.R.China
  • Received:1995-01-12 Online:1995-12-18 Published:1995-12-18

摘要: The work presented here shows the unsteady inviscid results obtained for the twoand three-dimensional wings which are in rigid and flexible osciliations.The results are generated by a finite volume Euler method. It is based on theRunge-Kutta time stepping scheme developed by Jameson et al.. To increase the timestep which is limited by the stability of Runge-Kutta scheme, the implicit residualsmoothing which is modified by using variable coefficients in prerent the loss of flowphysics for the unsteady flows is engaged in the calculations. With this unconditionalstable solver the unsteady flws about the wings in arbitrary motion can be receivedefficiently.The two-and three-dimensional rectangular wings which are in rigid andflexible pitching oscillations in the transonic flow are invesigated here, some of thecomputational results are compared with the experimental data. The influence of thereduced frequency for the two kinds of the wings are researched. All the results givenin this work are reasonable.

关键词: Euler equations, unsteady flow, transonic flow, CFD

Abstract: The work presented here shows the unsteady inviscid results obtained for the twoand three-dimensional wings which are in rigid and flexible osciliations.The results are generated by a finite volume Euler method. It is based on theRunge-Kutta time stepping scheme developed by Jameson et al.. To increase the timestep which is limited by the stability of Runge-Kutta scheme, the implicit residualsmoothing which is modified by using variable coefficients in prerent the loss of flowphysics for the unsteady flows is engaged in the calculations. With this unconditionalstable solver the unsteady flws about the wings in arbitrary motion can be receivedefficiently.The two-and three-dimensional rectangular wings which are in rigid andflexible pitching oscillations in the transonic flow are invesigated here, some of thecomputational results are compared with the experimental data. The influence of thereduced frequency for the two kinds of the wings are researched. All the results givenin this work are reasonable.

Key words: Euler equations, unsteady flow, transonic flow, CFD

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