Scinovex
articleTop 1% cited

Computation of Unsteady Nonlinear Flows in Cascades Using a Harmonic Balance Technique

AIAA Journal · 2002 · Vol. 40(5) · pp. 879–886
Kenneth C. HallJeffrey ThomasW. Scott Clark

Abstract

A harmonic balance technique for modeling unsteady nonlinear e ows in turbomachinery is presented. The analysis exploits the fact that many unsteady e ows of interest in turbomachinery are periodic in time. Thus, the unsteady e ow conservation variables may be represented by a Fourier series in time with spatially varying coefe cients. This assumption leads to a harmonic balance form of the Euler or Navier ‐Stokes equations, which, in turn, can be solved efe ciently as a steady problem using conventional computational e uid dynamic (CFD) methods, including pseudotime time marching with local time stepping and multigrid acceleration. Thus, the method is computationally efe cient, at least one to two orders of magnitude faster than conventional nonlinear time-domain CFD simulations. Computational results for unsteady, transonic, viscous e ow in the front stage rotor of a high-pressure compressor demonstrate that even strongly nonlinear e ows can be modeled to engineering accuracy with a small number of terms retained in the Fourier series representation of the e ow. Furthermore, in some cases, e uid nonlinearities are found to be important for surprisingly small blade vibrations.

Turbomachinery Performance and OptimizationComputational Fluid Dynamics and AerodynamicsFluid Dynamics and Turbulent FlowsTurbomachineryHarmonic balanceComputational fluid dynamicsNonlinear systemFourier seriesTransonicEuler equationsMultigrid methodMathematicsFourier analysis

Funding

  • Carnegie Mellon University
  • Glenn Research Center
Citations
713
FWCI
305.40
field-weighted impact
References
31
Percentile
100%
vs. same field & year
Citations per year
References
Related articles
Solution of the Euler equations for two dimensional transonic flow by a multigrid method
Applied Mathematics and Computation · 1983 · 505 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.