Abstract
The electromagnetic processes in the laboratory of three-phase arc furnaces is simulated with allowance for the spatial energy release in electrodes and a charge. Main laws are established for the electric currents and the thermal energy released in the charge during the passage of conduction currents and heating due to the effects of proximity of the melted well walls and the electrodes. The magnetic field distribution over the furnace radius is found.
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R. A. Bikeev, V. S. Cherednichenko, and M. G. Kuz’min, “Electromagnetic and thermal processes in the operating space of superpower arc steel-melting furnaces: Part 3,” Electrometallurgiya, No. 10, 29–35 (2013).
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R. A. Bikeev, V. S. Cherednichenko, and M. G. Kuz’min, “Electromagnetic and thermal processes in the operating space of superpower arc steel-melting furnaces: Part 1,” Electrometallurgiya, No. 8, 24–30 (2013).
R. A. Bikeev, V. S. Cherednichenko, and M. G. Kuz’min, “Electromagnetic and thermal processes in the operating space of superpower arc steel-melting furnaces: Part 2,” Electrometallurgiya, No. 9, 34–40 (2013).
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Original Russian Text © V.S. Cherednichenko, R.A. Bikeev, 2014, published in Elektrometallurgiya, 2014, No. 9, pp. 6–12.
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Cherednichenko, V.S., Bikeev, R.A. Electromagnetic processes in the laboratory of superpower electric arc furnaces. Russ. Metall. 2014, 945–950 (2014). https://doi.org/10.1134/S0036029514120027
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DOI: https://doi.org/10.1134/S0036029514120027