Modeling of n-butane ignition, combustion, and preflame oxidation in the 20-l vessel

Author:

Frolov S.M.,Basevich V.Ya.,Smetanyuk V.A.,Belyaev A.A.,Pasman H.J.

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Management Science and Operations Research,Energy Engineering and Power Technology,Safety, Risk, Reliability and Quality,General Chemical Engineering,Food Science,Control and Systems Engineering

Reference13 articles.

1. Basevich, V. Ya., Belayev, A. A., & Frolov, S. M. (2007). Oxidation and combustion mechanisms of normal alkane hydrocarbons: transition from C1-C3 hydrocarbons to C4H10. Rus. J. Chemical Physics, accepted.

2. Belyaev, A. A., & Posvianskii, V. S. (1985). Laminar flame code. In: Algorithms and codes. Information bulletin of USSR Foundation of algorithms and codes. No. 3. 35.

3. Bohm, H., Hesse, D., et al. (1988). The influence of pressure and temperature on soot formation in premixed flames. In: Proceedings of the 22nd symposium (intern.) on combustion (p. 403).

4. On the decay of turbulence in the 20-liter explosion sphere;Dahoe;Flow Turbulence and Combustion,2001

5. Oxidation and combustion of fuel-rich n-butane–oxygen mixture in a standard 20-liter explosion vessel;Frolov,2006

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