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Experimental study and numerical simulation of chemiluminescence emission during the self-ignition of hydrocarbon fuels.
- Source :
-
Acta Astronautica . Oct2019:Part A, Vol. 163, p18-24. 7p. - Publication Year :
- 2019
-
Abstract
- The time evolution of the chemiluminescence emission signals of CH*, OH*, C 2 *, and CO 2 * during the self-ignition of a number of the simple hydrocarbons is studied. The experiments are performed behind reflected shock waves over a temperature range of 1100–1900 K at a pressure of ∼1 bar. The effects of fuel-to-oxidizer equivalence ratio and the structure of the hydrocarbon molecule on the time profiles of the signals for each of the emitters are examined. A detailed kinetic mechanism for describing the emission signals from CH*, OH*, C 2 *, and CO 2 * recorded during the self-ignition of hydrocarbons is developed. To make the simulations more rigorous and reliable, the NASA thermodynamic polynomials for C 2 *, and CO 2 * were calculated based on the respective rotational and vibrational parameters given in the literature. Numerical simulations satisfactorily reproduce the measured time profiles of the signals from the studied emitters. • Chemiluminescence emission of CH*, OH*, C2*, and CO2* is studied. • Detailed kinetic mechanism for describing the emission signals was developed. • Simulation results well reproduce the measured intensity of emission. • Full width at half maximum of the emission signals are presented. [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 00945765
- Volume :
- 163
- Database :
- Academic Search Index
- Journal :
- Acta Astronautica
- Publication Type :
- Academic Journal
- Accession number :
- 138652684
- Full Text :
- https://doi.org/10.1016/j.actaastro.2019.03.001