On the Motion of a Viscous Compressible Radiative-Reacting Gas

被引:0
作者
Donatella Donatelli
Konstantina Trivisa
机构
[1] Università di L'Aquila,Dipartimento di Matematica Pura and Applicata
[2] University of Maryland,Department of Mathematics
来源
Communications in Mathematical Physics | 2006年 / 265卷
关键词
Weak Solution; Combustion Model; Entropy Inequality; Energy Inequality; Species Diffusion;
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摘要
A multidimensional model is introduced for the dynamic combustion of compressible, radiative and reactive gases. In the macroscopic description adopted here, the radiation is treated as a continuous field, taking into account both the wave (classical) and photonic (quantum) aspects associated with the gas [20, 36]. The model is formulated by the Navier-Stokes equations in Euler coordinates, which is now expressed by the conservation of mass, the balance of momentum and energy and the two species chemical kinetics equation. In this context, we are dealing with a one way irreversible chemical reaction governed by a very general Arrhenius-type kinetics law. The analysis in the present article extends the earlier work of the authors [17], since it now covers the general situation where, both the heat conductivity and the viscosity depend on the temperature, the pressure now depends not only on the density and temperature but also on the mass fraction of the reactant, while the two species chemical kinetics equation is of higher order.
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页码:463 / 491
页数:28
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