The Calculation of Three-Dimensional Viscous Flow in a Transonic, Multi-Stage Axial Compressor

다단축류압축기내의 천음속 점성유동에 대한 삼차원 수치해석

  • 이형욱 (인하대학교 기계공학과 대학원) ;
  • 김광용 (인하대학교 기계공학과)
  • Published : 1998.05.01

Abstract

A numerical study based on the three-dimensional Reynolds averaged Navier-Stokes equations is presented to analyze the transonic flowfield through two-stage axial compressor. Explicit four-step Runge-Kutta scheme is used for solution algorithm, and local time step and implicit residual averaging are introduced for enhancing the convergency. Artificial dissipation model is adopted to assure the stability of solution. The solver is coupled with Baldwin-Lomax model to describe turbulence. To avoid calculating the unsteady flow, a mixing process is modeled at a station between rotating and stationary blade rows. Results show a variety of important physical phenomena. Comparison of the flowfields with and without tip clearance shows that the effect is considerable in this flowfield. Comparisons with experimental data carried out to validate the calculational results show reasonable agreements. Some remedies are also suggested to improve the revealed problems.

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