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Published in: Experiments in Fluids 5/2024

01-05-2024 | Research Article

Interferometry analysis and CARS measurements of nonequilibrium in hypersonic oxygen/argon and pure oxygen flows

Authors: Juan J. Anaya, Nicholas S. Manavi, Albina A. Tropina, Arthur Dogariu, Richard B. Miles, Maninder S. Grover

Published in: Experiments in Fluids | Issue 5/2024

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Abstract

In this article we explore (a) optical and (b) thermochemical properties of reactive hypersonic flows, with an emphasis on oxygen dynamics and time resolved measurement capabilities. First, we discuss experimental and numerical analysis of reactive hypersonic flows of an argon–oxygen mixture over a blunt wedge geometry. The experimental campaign for that geometry uses Michelson interferometry to determine the refractive index of the shock layer. Numerical analysis of these cases reveals that there is dissociation of molecular oxygen in the shock layer. Excellent comparison between numerically predicted and nanosecond sampled experimentally observed refractive index serve as verification of non-equilibrium refractive index theory and the thermochemistry models used in the simulation. Uncertainties and limitations of the interferometry technique are discussed. In addition, we perform subnanosecond sampled femtosecond/picosecond hybrid Coherent anti-Stokes Raman scattering (CARS) spectroscopy behind a hypersonic Mach stem configuration in a pure oxygen flow to demonstrate capabilities to enhance understanding of nonequilibrium vibrational mode contributions to the refractive index. Hybrid CARS gives instantaneous vibrational populations and relevant vibrational temperatures at specific locations downstream of the shock.

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Metadata
Title
Interferometry analysis and CARS measurements of nonequilibrium in hypersonic oxygen/argon and pure oxygen flows
Authors
Juan J. Anaya
Nicholas S. Manavi
Albina A. Tropina
Arthur Dogariu
Richard B. Miles
Maninder S. Grover
Publication date
01-05-2024
Publisher
Springer Berlin Heidelberg
Published in
Experiments in Fluids / Issue 5/2024
Print ISSN: 0723-4864
Electronic ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-024-03804-1

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