@article{VMUMM_2024_3_a8,
author = {L. I. Stamov and V. V. Tyurenkova and E. V. Mikhalchenko and F. Chen and Yu. Meng},
title = {Modeling of processes in the combustion chamber of a hybrid solid-fuel engine},
journal = {Vestnik Moskovskogo universiteta. Matematika, mehanika},
pages = {60--64},
year = {2024},
number = {3},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VMUMM_2024_3_a8/}
}
TY - JOUR AU - L. I. Stamov AU - V. V. Tyurenkova AU - E. V. Mikhalchenko AU - F. Chen AU - Yu. Meng TI - Modeling of processes in the combustion chamber of a hybrid solid-fuel engine JO - Vestnik Moskovskogo universiteta. Matematika, mehanika PY - 2024 SP - 60 EP - 64 IS - 3 UR - http://geodesic.mathdoc.fr/item/VMUMM_2024_3_a8/ LA - ru ID - VMUMM_2024_3_a8 ER -
%0 Journal Article %A L. I. Stamov %A V. V. Tyurenkova %A E. V. Mikhalchenko %A F. Chen %A Yu. Meng %T Modeling of processes in the combustion chamber of a hybrid solid-fuel engine %J Vestnik Moskovskogo universiteta. Matematika, mehanika %D 2024 %P 60-64 %N 3 %U http://geodesic.mathdoc.fr/item/VMUMM_2024_3_a8/ %G ru %F VMUMM_2024_3_a8
L. I. Stamov; V. V. Tyurenkova; E. V. Mikhalchenko; F. Chen; Yu. Meng. Modeling of processes in the combustion chamber of a hybrid solid-fuel engine. Vestnik Moskovskogo universiteta. Matematika, mehanika, no. 3 (2024), pp. 60-64. http://geodesic.mathdoc.fr/item/VMUMM_2024_3_a8/
[1] Ben-Yakar A., Natan B., Gany A., “Investigation of a solid fuel scramjet combustor”, J. Propuls. Power, 14:4 (1998), 447–455 | DOI
[2] Tyurenkova V.V., Stamov L.I., “Flame propagation in weightlessness above the burning surface of material”, Acta Astronautica, 159 (2019), 342–348 | DOI
[3] Kushnirenko A.G., Stamov L.I., Tyurenkova V.V., Smirnova M.N., Mikhalchenko E.V., “Three-dimensional numerical modeling of a rocket engine with solid fuel”, Acta Astronautica, 181 (2021), 544–551 | DOI
[4] van Leer B., “Towards the ultimate conservative difference scheme, a second order sequel to Godunov's method”, J. Comput. Phys., 32 (1979), 101–136 | DOI | MR | Zbl
[5] Liou M.-S., “A sequel to AUSM: AUSM+”, J. Comput. Phys., 129 (1996), 364–382 | DOI | MR | Zbl
[6] Ferziger J.H., Peric M., Street R.L., Computational Methods for Fluid Dynamics, 4th ed., Springer, Cham, Switzerland, 2020 | MR | Zbl
[7] Novikov E.A., “L-ustoichivyi (4,2)-metod chetvertogo poryadka dlya resheniya zhestkikh zadach”, Vestn. Samar. un-ta. Estestvennonauchnaya seriya, 8(89) (2011), 59–68
[8] Rashkovskiy S.A., Yakush S.E., Baranov A.A., “Stabilization of solid fuel combustion in a ramjet engine”, J. Physics: Conference Series, 815 (2017), 012008 | DOI
[9] Wilcox D.C., Turbulence Modeling for CFD, 3rd ed., DCW Industries, La Canada, USA, 2006
[10] Tyurenkova V.V., Smirnova M.N., “Material combustion in oxidant flows: Self-similar solutions”, Acta Astronautica, 120 (2016), 129–137 | DOI
[11] Stamov L.I., Tyurenkova V.V., Mikhalchenko E.V., Chen F., Meng Y., “Simulation of combustion in the combustion chamber of solid fuel hybrid rocket engine”, Proc. Int. Astronaut. Congress, IAC 2023, v. A2, 2023, IAC-23-A2,2,12,x78293