On approaches to the simulation of filtration gas combustion
Sibirskij žurnal industrialʹnoj matematiki, Tome 18 (2015) no. 4, pp. 49-60.

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The first part of the article is a description of the model based on a system of first-order equations in terms of “temperature-heat flux”, “mass-diffusion flux” on using the concept of total enthalpy flow. This approach ensures strict compliance with the mesh conservation laws, which is extremely important for this class of problems. The second part of the article introduces the concept of instantaneous velocity of the combustion front and proposes stable methods for its calculation.
Mots-clés : filtration combustion, diffusion flux, explicit scheme.
Keywords: heat flux, mixed finite element method
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T. A. Kandryukova; Yu. M. Laevskii. On approaches to the simulation of filtration gas combustion. Sibirskij žurnal industrialʹnoj matematiki, Tome 18 (2015) no. 4, pp. 49-60. http://geodesic.mathdoc.fr/item/SJIM_2015_18_4_a5/

[1] Drobyshevich V. I., “Matematicheskaya model i algoritm dlya analiza sfericheskikh gibridnykh voln goreniya”, Sib. zhurn. industr. matematiki, 6:1 (2003), 12–15 | Zbl

[2] Laevskii Yu. M., Yausheva L. V., “Chislennoe modelirovanie filtratsionnogo goreniya gaza na osnove dvukhurovnevykh poluneyavnykh raznostnykh skhem”, Vychisl. tekhnologii, 12:2 (2007), 90–103

[3] Kandryukova T. A., Laevskii Yu. M., “O chislennom modelirovanii filtratsionnogo goreniya gazov na mnogoyadernykh vychislitelnykh sistemakh”, Sib. zhurn. industr. matematiki, 17:1 (2014), 55–64 | Zbl

[4] Babkin V. S., Laevskii Yu. M., “Filtratsionnoe gorenie gazov”, Fizika goreniya i vzryva, 23:5 (1987), 27–44

[5] Burzhe Zh., Kombarnu M., Surio P., Termicheskie metody povysheniya nefteotdachi plastov, Nedra, M., 1989

[6] Brezzi F., Fortin M., Mixed and Hybrid Finite Element Methods, Springer-Verl., N.Y., 1991 | MR | Zbl

[7] Zotkevich A. A., Laevskii Yu. M., “Chislennoe modelirovanie rasprostraneniya laminarnogo plameni na osnove dvukhurovnevykh yavnykh raznostnykh skhem”, Vychisl. tekhnologii, 11:6 (2006), 31–43 | Zbl

[8] Laevskii Yu. M., Popov P. E., Kalinkin A. A., “Modelirovanie filtratsii dvukhfaznoi zhidkosti smeshannym metodom konechnykh elementov”, Mat. modelirovanie, 22:3 (2010), 74–90 | MR