Modeling the Air Mixture Flow in an AC Plasma Torch
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-92144-6_21
Reference18 articles.
1. Surov, A., et al.: Multi-gas AC plasma torches for gasification of organic substances. Fuel 203, 1007–1014 (2017). https://doi.org/10.1016/j.fuel.2017.02.104
2. Trelles, J.P.: Nonequilibrium phenomena in (Quasi–) thermal plasma flows. Plasma Chem. Plasma Process. 40(3), 727–748 (2019). https://doi.org/10.1007/s11090-019-10046-1
3. Rehmet, C., Rohani, V., Cauneau, F., Fulcheri, L.: 3D unsteady state MHD modeling of a 3-phase AC hot graphite electrodes plasma torch. Plasma Chem. Plasma Process. 33, 491–515 (2013). https://doi.org/10.1007/s11090-013-9438-8
4. Rehmet, C., Fabry, F., Rohani, V., Cauneau, F., Fulcheri, L.: A comparison between MHD modeling and experimental results in a 3-phase AC arc plasma torch: influence of the electrode tip geometry. Plasma Chem. Plasma Process. 34(4), 975–996 (2014). https://doi.org/10.1007/s11090-014-9536-2
5. Modirkhazeni, S.M., Trelles, J.P.: Non-transferred arc torch simulation by a non-equilibrium plasma laminar-to-turbulent flow model. J. Therm. Spray Technol. 27(8), 1447–1464 (2018). https://doi.org/10.1007/s11666-018-0765-4
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