High fidelity modeling of thermal relaxation and dissociation of oxygen
Author:
Affiliation:
1. Department of Aerospace Engineering, University of Michigan, 1320 Beal Ave., Ann Arbor, Michigan 48108, USA
Funder
Air Force Office of Scientific Research (AFOSR)
Publisher
AIP Publishing
Subject
Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering
Reference42 articles.
1. R. Jaffe, D. Schwenke, and G. Chaban, “Theoretical analysis of N2 collisional dissociation and rotation-vibration energy transfer,” AIAA Paper 2009-1569, 2009.
2. Quasi-classical dynamics and vibrational kinetics of N+N2(v) system
3. Rovibrational internal energy transfer and dissociation of N2(1Σg+)−N(4Su) system in hypersonic flows
4. Complex Formation in Reactive and Inelastic Scattering: Statistical Adiabatic Channel Model of Unimolecular Processes III
5. O–O2 state-to-state vibrational relaxation and dissociation rates based on quasiclassical calculations
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