NASA NTRS · 20000021221
Unsteady Cascade Aerodynamic Response Using a Multiphysics Simulation Code
Abstract
The multiphysics code Spectrum(TM) is applied to calculate the unsteady aerodynamic pressures of oscillating cascade of airfoils representing a blade row of a turbomachinery component. Multiphysics simulation is based on a single computational framework for the modeling of multiple interacting physical phenomena, in the present case being between fluids and structures. Interaction constraints are enforced in a fully coupled manner using the augmented-Lagrangian method. The arbitrary Lagrangian-Eulerian method is utilized to account for deformable fluid domains resulting from blade motions. Unsteady pressures are calculated for a cascade designated as the tenth standard, and undergoing plunging and pitching oscillations. The predicted unsteady pressures are compared with those obtained from an unsteady Euler co-de refer-red in the literature. The Spectrum(TM) code predictions showed good correlation for the cases considered.
Keep this discovery
Explore connections, maps & timelines
Lawrence, C., Reddy, T. S. R., Spyropoulos, E.. 2000-01-01. Unsteady Cascade Aerodynamic Response Using a Multiphysics Simulation Code. https://ntrs.nasa.gov/citations/20000021221
Cite the original work for its findings. Save a collection to share your selection of sources.