NASA NTRS · 19880040493
Velocity-coupled flow oscillations in a simulated solid-propellant rocket environment
Abstract
A comprehensive numerical analysis has been carried out to study the unsteady flowfields in a simulated rocket-motor environment. The model is based on the time-dependent compressible Navier-Stokes equations with a two-equation turbulence closure scheme. Various important aspects of the coupling between acoustic oscillations and mean flowfields, including flow reversal, modification of transport properties, etc., are addressed. Results indicate that multi-dimensional effects play important roles in determining local flow structures and wave characteristics. In much of the domain, acoustic velocity nodal points are observed in the near-wall region. The classical one-dimensional theory fails to describe several important mechanisms associated with velocity-induced flow instabilities.
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Yang, Vigor, Hsieh, Kwang-Chung, Tseng, Jesse I. S.. 1988-01-01. Velocity-coupled flow oscillations in a simulated solid-propellant rocket environment. https://ntrs.nasa.gov/citations/19880040493
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