Adaptive coarse graining method for energy transfer and dissociation kinetics of polyatomic species. Sahai, A., Lopez, B., Johnston, C. O., & Panesi, M. The Journal of Chemical Physics, 147(5):054107–054107, August, 2017. Publisher: AIP Publishing LLCAIP Publishing
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A novel reduced-order method is presented for modeling reacting flows characterized by strong non-equilibrium of the internal energy level distribution of chemical species in the gas. The approach ...
@article{sahai2017,
	title = {Adaptive coarse graining method for energy transfer and dissociation kinetics of polyatomic species},
	volume = {147},
	doi = {10.1063/1.4996654},
	abstract = {A novel reduced-order method is presented for modeling reacting flows characterized by strong non-equilibrium of the internal energy level distribution of chemical species in the gas. The approach ...},
	number = {5},
	journal = {The Journal of Chemical Physics},
	author = {Sahai, A. and Lopez, B. and Johnston, C. O. and Panesi, M.},
	month = aug,
	year = {2017},
	note = {Publisher: AIP Publishing LLCAIP Publishing},
	keywords = {chemically reactive flow, dissociation, master equation, maximum entropy methods, nitrogen, reduced order systems},
	pages = {054107--054107},
}

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