Multigrid Computations of Unsteady Rotor-Stator Interaction Using the Navier-Stokes Equations

Author:

Arnone A.1,Pacciani R.2,Sestini A.3

Affiliation:

1. Department of Energy Engineering, University of Florence, Via S. Marta, 3, 50139 Florence, Italy

2. Institute of Energetics, University of Perugia, Perugia, Italy

3. Department of Energy Engineering, University of Florence, Florence, Italy

Abstract

A Navier-Stokes time-accurate solver has been extended to the analysis of unsteady rotor-stator interaction. In the proposed method, a fully-implicit time discretization is used to remove stability limitations. A four-stage Runge-Kutta scheme is used in conjunction with several accelerating techniques typical of steady-state solvers, instead of traditional time-expensive factorizations. Those accelerating strategies include local time stepping, residual smoothing, and multigrid. Direct interpolation of the conservative variables is used to handle the interfaces between blade rows. Two-dimensional viscous calculations of unsteady rotor-stator interaction in a modern gas turbine stage are presented to check for the capability of the procedure.

Publisher

ASME International

Subject

Mechanical Engineering

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