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NASA NTRS · 19910036878

Vibration-dissociation coupling in nonequilibrium flows

Abstract

The purpose of the study is to evaluate all important physical phenomena contributing to the vibration-dissociation problem by developing a numerical technique for the simulation of the vibrational relaxation and dissociation/recombination of N(2) in an isothermal box. A set of coupled master equations representing each vibrational level of N(2) is solved, and both V-V and V-T exchanges between molecules and atoms are included, along with the effects of dissociation and recombustion from/to each level. It is observed that the inverse range parameter has a strong impact on the vibrational exchange rates and relaxation. In a heating case, the lower vibrational levels relax through a series of equilibrium distributions, while in a cooling case, a population inversion is formed in the upper levels. Other cases of heating and cooling will be simulated, and together with this work, used to develop a matrix of nonequilibrium relaxation runs.

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BibTeXRIS

Landrum, D. Brian, Candler, Graham V.. 1991-01-01. Vibration-dissociation coupling in nonequilibrium flows. https://ntrs.nasa.gov/citations/19910036878

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