Please use this identifier to cite or link to this item: http://hdl.handle.net/1822/11296

TitleTransport properties of a kinetic model for chemical reactions without barriers
Author(s)Alves, Giselle M.
Kremer, Gilberto M.
Soares, A. J.
KeywordsBoltzmann equation
Chemically reactive flows
Transport processes
Issue date2011
PublisherAmer Inst Physics
JournalAIP Conference Proceedings
Abstract(s)A kinetic model of the Boltzmann equation for chemical reactions without energy barrier is considered here with the aim of evaluating the reaction rate and characterizing the transport coefficient of shear viscosity for the reactive system. The Chapman-Enskog solution of the Boltzmann equation is used to compute the chemical reaction effects, in a flow regime for which the reaction process is close to the final equilibrium state. Some numerical results are provided illustrating that the considered chemical reaction without energy barrier can induce an appreciable influence on the reaction rate and on the transport coefficient of shear viscosity.
TypeConference paper
URIhttp://hdl.handle.net/1822/11296
ISBN9780735408890
DOI10.1063/1.3562719
ISSN0094-243X
Publisher versionhttp://link.aip.org/link/?APCPCS/1333/643/1
Peer-Reviewedyes
AccessOpen access
Appears in Collections:CMAT - Artigos em atas de conferências e capítulos de livros com arbitragem / Papers in proceedings of conferences and book chapters with peer review
DMA - Comunicações

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