Kinetic of non-equilibrium physical and chemical processes in the multicomponental turbulent charge of the piston engine
Matematičeskoe modelirovanie, Tome 19 (2007) no. 12, pp. 101-117.

Voir la notice de l'article provenant de la source Math-Net.Ru

A set of associated information models purposed to investigate and optimize coupled physical and chemical processes in the piston combustion engine is developed. It differs from prototypes by enhanced physical consistence, by improved chemical resolution, by the module-oriented structure and respective computer-aided tools, as well as by the higher constants reliability. In addition the following results are of a great separate importance: an original technique of the approximate solution of the flame equation, a two-scale averaging procedure applicably to the kinetics?diffusion problem and finally a factorization approach to computing of the minor toxic constituents in the charge. Designed models enable in practice to simulate multiple fine features of the engine dynamics including non-stationary regimes and alternative fuels. Furthermore the elaboration may be easily applied to other energy transfer combustion systems.
@article{MM_2007_19_12_a10,
     author = {V. N. Bakulin and E. N. Ladosha and V. A. Potopachin and O. V. Yatcenko},
     title = {Kinetic of non-equilibrium physical and chemical processes in the multicomponental turbulent charge of the piston engine},
     journal = {Matemati\v{c}eskoe modelirovanie},
     pages = {101--117},
     publisher = {mathdoc},
     volume = {19},
     number = {12},
     year = {2007},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/MM_2007_19_12_a10/}
}
TY  - JOUR
AU  - V. N. Bakulin
AU  - E. N. Ladosha
AU  - V. A. Potopachin
AU  - O. V. Yatcenko
TI  - Kinetic of non-equilibrium physical and chemical processes in the multicomponental turbulent charge of the piston engine
JO  - Matematičeskoe modelirovanie
PY  - 2007
SP  - 101
EP  - 117
VL  - 19
IS  - 12
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/MM_2007_19_12_a10/
LA  - ru
ID  - MM_2007_19_12_a10
ER  - 
%0 Journal Article
%A V. N. Bakulin
%A E. N. Ladosha
%A V. A. Potopachin
%A O. V. Yatcenko
%T Kinetic of non-equilibrium physical and chemical processes in the multicomponental turbulent charge of the piston engine
%J Matematičeskoe modelirovanie
%D 2007
%P 101-117
%V 19
%N 12
%I mathdoc
%U http://geodesic.mathdoc.fr/item/MM_2007_19_12_a10/
%G ru
%F MM_2007_19_12_a10
V. N. Bakulin; E. N. Ladosha; V. A. Potopachin; O. V. Yatcenko. Kinetic of non-equilibrium physical and chemical processes in the multicomponental turbulent charge of the piston engine. Matematičeskoe modelirovanie, Tome 19 (2007) no. 12, pp. 101-117. http://geodesic.mathdoc.fr/item/MM_2007_19_12_a10/

[1] Kulchitskii A. R., Toksichnost avtomobilnykh i traktornykh dvigatelei, Akademicheskii proekt, M., 2004

[2] Yakubovskii Yu., Avtomobilnyi transport i zaschita okruzhayuschei sredy, Transport, M., 1979

[3] Bednarskii V. V., Ekologicheskaya bezopasnost pri ekspluatatsii i remonte avtomobilei, Feniks, Rostov n/D, 2003

[4] Markov V. A., Bashirov R.M., Gabitov I. I., Toksichnost otrabotavshikh gazov dizelei, MGTU, M., 2002

[5] Govoruschenko N. Ya., Ekonomiya topliva i snizhenie toksichnosti na avtomobilnom transporte, Transport, M., 1990

[6] Arnold A., Becker H., Hemberger R. et al., “Laser in situ monitoring of combustion process”, Appl. Optics, 29 (1990), 4860–4883 | DOI

[7] Coltrin M. E., Kee R. J., Rupley F. M., “Surface Chemkin: A general formalism and software for analyzing het-eroheneous chemical kinetics at a gas-surface interface”, Int. J. Chem. Kinetics, 23 (1993), 1111–1124 | DOI

[8] Eckbreth A. C., Laser diagnostics for combustion temperature and species: In Combustion science and technology book series, V. 3, ed. W. A. Sirignano., Gordon and Breach, 1996

[9] Chevalier C., Warnatz J., Melenk H., “Automatic generation of reaction mechanisms for description of oxidation of higher hydrocarbons”, Ber. Bunsenges Phys. Chem., 94 (1990), 1362–1376

[10] Gutheil E., Sirignano W. A., “Counterflow spray combustion modeling with detailed transport and detailed chemistry”, Combustion and Flame, 113 (1998), 92–110 | DOI

[11] Schmidt D., Modellierung reaktiver Stromungen unter Verwendung automatisch reduzierter Reaktionsmechanismen, PhD Thesis, Univ. Heidelberg, 1996

[12] Samarskii A. A., Mikhailov A. P., Matematicheskoe modelirovanie: Idei. Metody. Primery, Fizmatlit, M., 2001 | MR | Zbl

[13] Koul Dzh., Metody vozmuschenii v prikladnoi matematike, Mir, M., 1972 | MR

[14] Tikhonov A. N., “Sistema differentsialnykh uravnenii, soderzhaschikh malye parametry pri proizvodnykh”, Mat. sb., 31(73):3 (1952), 575–586 | Zbl

[15] Kurdyumov S. P., Knyazeva E. N., “Osobennosti neravnovesnykh protsessov v otkrytykh dissipativnykh sredakh”, Problemy geofiziki XXI veka, Ch. 1, ed. A. V. Nikolaev, Nauka, M., 2003, 37–65

[16] R. King, Khimicheskie prilozheniya topologii i teorii grafov, Mir, M., 1987

[17] Malinetskii G. G., Khaos. Struktury. Vychislitelnyi eksperiment: Vvedenie v nelineinuyu dinamiku, Editorial URSS, M., 2000

[18] Bulygin Yu. I., Zhigulin I. N., Magnitskii Yu. A., Yatsenko O. V., Matematicheskoe modelirovanie rabochego protsessa porshnevykh mashin, Monografiya, RGUPS, Rostov n/D, 2001

[19] Bulygin Yu. I., Zhigulin I. N., Ladosha E. N., Yatsenko O. V., Raschet energo-ekologicheskikh parametrov DVS “ENGINE”, Svid. ob ofits. registratsii programmy dlya EVM No 2002610605, Rospatent, M., 2002

[20] Yatsenko O. V., Zagorodnyuk V. T., Kompyuternoe modelirovanie zadach prikladnoi fiziko-khimicheskoi dinamiki, SKNTs VSh, Rostov n/D, 2001

[21] Zhigulin I. N., Ladosha E. N., Yatsenko O. V., Teplomassoobmen v energeticheskikh i transportnykh sistemakh: kompyuternye metody issledovaniya i obucheniya, RGUPS, Rostov n/D, 2002

[22] Zeldovich Ya. B., Teoriya goreniya i detonatsii gazov, Izd-vo AN SSSR, M., 1944

[23] Bakulin V. N., Ladosha E. N., Potopakhin V. A., Yatsenko O. V., “Programmnye sredstva sinteza i analiza kompyuternykh modelei (foto)-khimicheski aktivnykh gazov dlya aerokosmicheskikh issledovanii”, Matem. modelirovanie, 18:9 (2006), 79–91 | Zbl

[24] Kerner B. S., Osipov V. V., Avtosolitony: Lokalizovannye silno-neravnovesnye oblasti v odnorodnykh dissipativnykh sistemakh, Nauka, M., 1991 | Zbl

[25] Zeldovich Ya. B., Frank-Kamenetskii D. A., “Teoriya teplovogo rasprostraneniya plameni”, Zhurn. fiz. khimii, 12 (1938), 100–105

[26] Zeldovich Ya. B., Barenblatt G. I., “Theory of flame propagation”, Combustion and Flame, 3 (1959), 61–74 | DOI | MR

[27] Kolmogorov A. N., Petrovskii I. G., Piskunov N. S., “Issledovanie uravneniya diffuzii, soedinennogo s vozrastaniem kolichestva veschestva i ego primenenie k odnoi biologicheskoi probleme”, Byulleten MGU, ser. A., 1:6 (1937)

[28] Davletshin R. F., Kudryavtsev N. N., Yatsenko O. V., “Kinetika fotoprevraschenii v molekulyarnom gaze, obluchaemom moschnym istochnikom UF-izlucheniya”, Kinetika i kataliz, 34:5 (1993), 780–782

[29] Warnatz J., Maas U., Dibble R. W., Combustion. Physical and chemical fundamentals, modeling and simulations, experiments, pollutant formation, Springer, 2001 | Zbl

[30] Lem Dzh. L., Vvedenie v teoriyu solitonov, Mir, M., 1983 | MR

[31] U. Frost, T. Moulden (red.), Turbulentnost: printsipy i primeneniya, Mir, M., 1980

[32] Kolesnichenko A. V., Marov M. Ya., Turbulentnost mnogokomponentnykh sred, Nauka, M., 1999 | MR

[33] R. M. Petrichenko, Elementy sistemy avtomatizirovannogo proektirovaniya DVS, Mashinostroenie, L., 1990

[34] Zeldovich Ya. B., Sadovnikov P. Ya., Frank-Kamenetskii D. A., Okislenie azota pri gorenii, AN SSSR, M.-L., 1947

[35] Ladosha E. N., Kholodova S. N., Yatsenko O. V., “Ekologo-informatsionnye tekhnologii: kompyuternoe modelirovanie toksicheskikh kharakteristik porshnevykh dvigatelei vnutrennego sgoraniya (kineticheskii podkhod)”, Inzhenernaya ekologiya, 2005, no. 4, 40–51

[36] Zhigulin I. N., Ladosha E. N., Yatsenko O. V., Teplotekhnicheskie raschety na EVM: Monografiya, RGUPS, Rostov n/D, 2005

[37] Yatsenko O. V., Radiatsionnye, kineticheskie i termodinamicheskie konstanty dlya kompyuternogo modelirovaniya vzaimodeistvii tekhnicheskikh sistem s neravnovesnymi gazami rabochei i okruzhayuschei sred, Svid. ob ofits. registratsii BD No 2003620238, Rospatent, M., 2003

[38] Jachimowski C. J., “A simplified hydrocarbon reaction mechanism for combustion applications”, J. Propulsion and Power, 1:5 (1985), 329–335 | DOI

[39] Bulygin Yu. I., Eksperimentalnoe i kompyuternoe issledovanie rabochego protsessa i toksichnosti teplovoznykh DVS, DGTU, Rostov n/D., 2006

[40] Zvonov V. A., Toksichnost dvigatelei vnutrennego sgoraniya, Mashinostroenie, M., 1981

[41] Bulygin Yu. I., “Kompyuternoe modelirovanie rabochego protsessa v DVS”, Izvestiya vuzov. Mashinostroenie, 2001, no. 6, 31–38

[42] Pirumov U. G., Matematicheskoe modelirovanie v problemakh okhrany vozdushnogo basseina, Izd-vo MAI, M., 2001