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NASA NTRS · 19930039385

Time-dependent simulation of reflected-shock/boundary layer interaction

Abstract

An initial numerical/experimental investigation has been done to better understand multi-dimensional flow phenomena inside pulse facilities. Time-dependent quasi-one-dimensional and axisymmetric numerical simulations of complete shock tube flow are compared with experimental pressure traces recorded at the NASA Ames electric-arc driven shock tube facility (from cold driver shots). Of particular interest is the interaction between the reflected shock wave and the boundary layer. Evidence of the shock bifurcation caused by this interaction is clearly seen in the present experimental data. The axisymmetric simulations reproduce this phenomenon and demonstrate how this interaction can provide a mechanism for driver gas to contaminate the stagnation region. The simulations incorporate finite-rate chemistry, a moving mesh and laminar viscosity.

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BibTeXRIS

Wilson, Gregory J., Sharma, Surendra P., Gillespie, Walter D.. 1993-01-01. Time-dependent simulation of reflected-shock/boundary layer interaction. https://ntrs.nasa.gov/citations/19930039385

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