The structure of the swirling flow in the counterflow vortex reactor
Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, Tome 28 (2022) no. 1-2, pp. 106-112
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Two promising designs of counterflow vortex reactor were numerically investigated. Such apparatus utilizes reverse flow to withdraw thermal energy and products from interelectrode area. Complex gasdynamic structure of the water-vapor flow was investigated using turbulent three-dimensional simulation employing Reynolds averaged Navier-Stokes equations along with SST $k-\omega$ turbulence model – technique tested in earlier papers. Presented velocity profiles and heat flux reports demonstrate viability of both approaches.
Keywords: hydrogen, swirling flows, plasma-vortex generator, computational fluid dynamics, clean energy.
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D. P. Porfiriev; I. P. Zavershinskii; D. V. Agapova. The structure of the swirling flow in the counterflow vortex reactor. Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, Tome 28 (2022) no. 1-2, pp. 106-112. http://geodesic.mathdoc.fr/item/VSGU_2022_28_1-2_a7/

[1] Klimov A.I. et al., “Hydrogen Plasma Flow Creation for MHD Power Generation”, 42nd AIAA Plasmadynamics and Lasers Conference in conjunction with the 18th International Conference on MHD Energy Conversion (ICMHD), 2011, 3285 | DOI

[2] Bityurin V.A., Klimov A.I., Korshunov O.V., Chinnov V.F., “Kinetic model of aluminum oxidation by water vapor in heterogeneous plasma: Gas-phase kinetics”, High Temperature, 52:5 (2014), 621–626 | DOI | DOI

[3] Bityurin V.A., Klimov A.I., Korshunov O.V., Chinnov V.F., “Kinetic model of Al oxidation by water vapor in heterogeneous plasma: Heterophase kinetics”, High Temperature, 53:1 (2015), 21–26 | DOI | DOI

[4] Kazanskiy P.N., Klimov A.I., Molevich N.E., Porfiriev D.P., Zavershinskii I.P., “Numerical simulation of an argon swirling flow in the presence of a DC discharge”, Journal of Physics: Conference Series, 980:1 (2018), 012010 | DOI

[5] Gorbunova A., Molevich N., Porfiriev D., Sugak S., Zavershinskii I., Klimov A., Moralev I., “Precessing vortex core in a swirling wake with heat release”, International Journal of Heat and Fluid Flow, 59 (2016), 100–108 | DOI

[6] Zavershinskii I.P., Klimov A.I., Makaryan V.G., Molevich N.E., Moralev I.A., Porfir'ev D.P., “Structure of RF capacitive discharge in swirl airflow at atmospheric pressure”, Technical Physics Letters, 37:12 (2011), 1120–1123 | DOI

[7] Belov N.K., Zavershinskii I.P., Klimov A.I., Molevich N.E., Porfiriev D.P., Tolkunov B.N., “High effective heterogeneous plasma vortex reactor for production of heat energy and hydrogen”, Journal of Physics: Conference Series, 980:1 (2018), 012040 | DOI