[1]
W. Nusselt und W. Jurges, Zs.VDI, 72 (1928).
Google Scholar
[2]
E. Schmidt und W. Beckmann, Techn. Mech. und Thermodynamick, 1(1930) 341-391.
Google Scholar
[3]
Metallurgical Furnaces. V.А. Krivandin, B.L. Markov. Moscow, Metallurgy, (1967).
Google Scholar
[4]
Е.I. Kazantsev, Industrial furnaces. Reference Manual for Calculations and Design, Moscow, Metallurgy, (1975).
Google Scholar
[5]
Е. F. Vegman, Blast-Furnace Practice: Reference Book. In 2 volumes. Т. Ore Preparation and Blast Furnace Process, Edited by E. F. Vegman, Moscow: Metallurgy, (1989).
Google Scholar
[6]
V. М. Baboshin, Е. А. Krichevtsov, V. М. Abzalov, Ya. М. Shchelokov, Heat Transfer Properties of Ferrous Metallurgy Fuels and Burden Materials: Reference Book, Moscow: Metallurgy, (1982).
Google Scholar
[7]
V.А. Startsev, G.V. Voronov, V.I. Lobanov, Scrap and Coke Practice at Steel Production in Open-Hearth Furnaces, Ekaterinburg: Ural State Technical University, Ural Polytechnic Institute, (2004).
Google Scholar
[8]
А. Misnar, Heat Transfer of Solids, Liquids, Gasses and their Compositions, Moscow: Mir, Publishing House. (1968).
Google Scholar
[9]
V.S. Chirkin, Material Heat Transfer Properties. Moscow, Fizmatgiz, (1959).
Google Scholar
[10]
М.V. Kirpichev, М.А. Mikheev, L.S. Eigenson, Heat Transfer: Workbook for Power Engineering Universities, GEI-State Power Engineering Publishing House, (1940).
Google Scholar
[11]
B.I. Kitaev, B.F. Zobnin, V.F. Ratnikov, etc. Thermotechnical Calculations for Metallurgical Furnaces. Moscow: Metallurgy Publishing House, (1970).
Google Scholar
[12]
A.E. Semin, A.G. Chizhikov, Steel Scrap and Electric Melting, Electrometallurgy, 6 (2007) 2-6.
Google Scholar
[13]
E.E. Merker, Е.А. Chermenev, Iron-Rich Pellet Electric Melting in Arc Furnace, Stary Oskol: Fine High Technologies, (2015).
Google Scholar
[14]
E. E. Merker, А. V. Sazonov, А. А. Grishin, Special Features of Pellet Electric Melting Process in Arc Furnace, University Bulletin. Ferrous Metallurgy, 2 (2008) 31-33.
Google Scholar
[15]
A. N. Makarov, A. U. Sokolov, A. S. Dundin. Power Engineering Parameter Impact on Arc Steel Furnace DSP-150 Economic Performance at Scrap and Pellet Melting. Part I. Electric Furnace Operation with High Arc Performance at Scrap and Pellet Melting, Electrometallurgy, 2 (2010) 7-13.
DOI: 10.1134/s0036029510120049
Google Scholar
[16]
M.V. Shishimirov, O.M. Sosonkin, Resource Conservation and Steel Melting Efficiency Improvement Reserves for Arc Steel Furnaces, South Ural State University Bulletin. Series: Metallurgy, 15(3) (2015) 70-79.
Google Scholar
[17]
А.V. Sazonov, E.E. Merker, Е.А. Chermenev, Pellet Melting Stimulation at Their Feeding into Electric Arc on Melted Slag Impact Area, Ferrous Metallurgy Bulletin, 8 (2011) 62-64.
Google Scholar
[18]
G.V. Voronov, V.A. Goltsev, I.V. Glukhov, Aerodynamics and Thermal State of State-of-the-Art Arc Steel Furnace. Ferrous Metallurgy and Material Engineering Issues, 1 (2016)28-34.
Google Scholar
[19]
G.V. Voronov, V.A. Goltsev, I.V. Glukhov, I.V. Plesakin, On Practical Burden Material Feeding and Fuel Firing Arrangement of Arc Steel Furnace DSP-120. Ferrous Metallurgy, 4(1408) (2017) 45-49.
Google Scholar