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Autoignition of propane–air mixtures behind reflected shock waves
Authors:O.G. Penyazkov   K.A. Ragotner   A.J. Dean  B. Varatharajan
Affiliation:aPhysical and Chemical Hydrodynamics Laboratory, Heat and Mass Transfer Institute of the National Academy of Sciences of Belarus 15 P.Brovki str., 220072, Minsk, Belarus;bGeneral Electric Global Research Center, Niskayuna, NY, USA
Abstract:
Ignition times and autoignition modes for propane–air mixtures have been studied behind reflected shock waves. Experiments were performed over temperatures between 1000 and 1750 K, pressures between 2 and 20 atm, and equivalence ratios of = 0.5, 1.0, and 2.0. Ignition delay times were determined using pressure measurements, C2 emission profiles, and luminosity measurements in the visible spectrum (380–680 nm). Empirical correlations for ignition time for low temperature (1000–1300 K) and high temperature (1300–1800 K) ranges have been deduced from the experimental data. Different autoignition modes of the mixture (strong, transient, and weak) were identified by comparing velocities of reflected shock wave at different distances from the reflecting wall.
Keywords:Autoignition   Ignition time   Shock wave   Detonation
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