|
This article is cited in 8 scientific papers (total in 8 papers)
Features of intrinsic electric field formation in low-temperature oxygen–methane plasma
A. Rudinskiy, D. A. Yagodnikov, S. V. Ryzhkov, V. V. Onufriev Bauman Moscow State Technical University
Abstract:
The mathematical model has been developed for the combustion of oxygen-methane plasma at pressures of 0.2 – 1.6 MPa, taking into account the ionization of combustion products and the recombination of charged components. The concentrations of positive ions were determined for the characteristic zones of the reacting oxygen-methane mixture under the assumption of ambipolar diffusion. The distributions of the strength of the self-consistent electric field and the generated electric charge along the length of the channel are obtained. The simulation results in terms of the concentration of electrons and ions in the flame are verified by the known experimental data obtained by probe methods under the operating conditions of a model liquid-propellant rocket engine.
Keywords:
low-temperature plasma, oxygen, methane, combustion, ambipolar diffusion, intrinsic electric field.
Received: 27.11.2020 Revised: 09.02.2021 Accepted: 25.02.2021
Citation:
A. Rudinskiy, D. A. Yagodnikov, S. V. Ryzhkov, V. V. Onufriev, “Features of intrinsic electric field formation in low-temperature oxygen–methane plasma”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:10 (2021), 42–45; Tech. Phys. Lett., 47:7 (2021), 520–523
Linking options:
https://www.mathnet.ru/eng/pjtf4790 https://www.mathnet.ru/eng/pjtf/v47/i10/p42
|
Statistics & downloads: |
Abstract page: | 74 | Full-text PDF : | 29 |
|