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Results: 1-9 |
Results: 9

Authors: Frolov, SM Basevich, VY Belyaev, AA
Citation: Sm. Frolov et al., Modeling of turbulent flame stabilization on bluff bodies, CHEM PHYS R, 18(9), 2000, pp. 1683-1704

Authors: Frolov, SM Basevich, VY Belyaev, AA
Citation: Sm. Frolov et al., Mechanism of turbulent flame stabilization on a bluff body, CHEM PHYS R, 18(8), 2000, pp. 1495-1516

Authors: Basevich, VY Vedeneev, VI Arutyunyan, VS
Citation: Vy. Basevich et al., Kinetic modeling of cool flames in CH3CHO-O-2 mixtures, CHEM PHYS R, 18(6), 2000, pp. 1081-1099

Authors: Basevich, VY Belyaev, AA Frolov, SM
Citation: Vy. Basevich et al., "Global" kinetic mechanisms for calculating turbulent reactive flows. III.Promotion of combustion, CHEM PHYS R, 18(4), 1999, pp. 751-765

Authors: Frolov, SM Basevich, VY Belyaev, AA Posvyanskii, VS Radvogin, YB
Citation: Sm. Frolov et al., Simulation of flame stabilization in a turbulent flow, CHEM PHYS R, 18(3), 1999, pp. 569-598

Authors: Arutyunov, VS Basevich, VY Vedeneev, VI Krylov, OV
Citation: Vs. Arutyunov et al., On the role of a catalyst in high-temperature reactions of methane oxidation, KINET CATAL, 40(3), 1999, pp. 382-387

Authors: Basevich, VY Belyaev, AA Frolov, SM
Citation: Vy. Basevich et al., "Global" kinetic mechanisms for calculating turbulent reactive flows. I. The basic chemical heat release process, CHEM PHYS R, 17(9), 1998, pp. 1747-1771

Authors: Basevich, VY Vedeneev, VI Arutyunov, VS
Citation: Vy. Basevich et al., Kinetic interpretation of multi-stage self-ignition of paraffin hydrocarbons, CHEM PHYS R, 17(5), 1998, pp. 917-926

Authors: Basevich, VY Belyaev, AA Frolov, SM
Citation: Vy. Basevich et al., "Global" kinetic mechanisms for calculating turbulent reactive flows. II. Formation of nitrogen oxide, CHEM PHYS R, 17(10), 1998, pp. 1895-1908
Risultati: 1-9 |