Collisional-radiative modelling of quasi-thermal air plasmas with electronic temperatures between 2000 and 13,000 K—II. 2000 K⩽Θe⩽4000 K
Identifieur interne : 000179 ( France/Analysis ); précédent : 000178; suivant : 000180Collisional-radiative modelling of quasi-thermal air plasmas with electronic temperatures between 2000 and 13,000 K—II. 2000 K⩽Θe⩽4000 K
Auteurs : J. P. Sarrette [France] ; A. M. Gomes [France] ; J. Bacri [France]Source :
- Journal of Quantitative Spectroscopy and Radiative Transfer [ 0022-4073 ] ; 1994.
Abstract
To extend the validity limits of a collisional-radiative model created to describe a homogeneous and stationary air plasma for electronic temperatures lower than 4000 K, radiative processes, electron-heavy particle and heavy-heavy particle inelastic collisions are taken into consideration in the rate equations of the excited levels. The effects of radiation escape in a monothermal plasma and of radiation escape together with the non equipartition of the kinetic energy in a two-temperature plasma are discussed. One application deals with diagnostic methods using molecular spectroscopy.
Url:
DOI: 10.1016/0022-4073(95)90002-0
Affiliations:
- France
- Midi-Pyrénées, Occitanie (région administrative)
- Toulouse
- Université Toulouse III - Paul Sabatier
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ISTEX:E84F5FB365B81530C741BE0F846AC24A3D38E6AFLe document en format XML
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<front><div type="abstract" xml:lang="en">To extend the validity limits of a collisional-radiative model created to describe a homogeneous and stationary air plasma for electronic temperatures lower than 4000 K, radiative processes, electron-heavy particle and heavy-heavy particle inelastic collisions are taken into consideration in the rate equations of the excited levels. The effects of radiation escape in a monothermal plasma and of radiation escape together with the non equipartition of the kinetic energy in a two-temperature plasma are discussed. One application deals with diagnostic methods using molecular spectroscopy.</div>
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