Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1068
  • Pages: 3-7
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Heading: Science for glass production

Possible modes of gas outflow into the molten glass layer through a horizontal tuyere, as well as the structure of the blowing zone formed in this case, are investigated on a physical model of a glass-making furnace with a bubbling layer. Initial data were obtained for the formation of unambiguous conditions in the mathematical model of mixing glass melt in a bath furnace.
Dr. Tech. sciences G. S. Sbornikov ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), A. Yu. Terekhova ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ); National Research Technological University "MISiS" (Russia, Moscow)
Abramovich G. N., Girshovich T. A., Krashennikov S. Yu. Et al. Theory of turbulent jets. M .: Nauka, 1984. Girshovich NA Theory of turbulent two-phase jets. M .: Mashinostroenie, 1993.256 p. Sbornik G.S., Volodin A.M. Ferrous metallurgy. 2009.? 7.S. 55? 59. Sborshchikov GS, Grishaeva SV Mathematical model of the process of blowing molten glass with a gas flow supplied through tuyeres located under the level of the melt. Glass and Ceramics. 2012.? 6.S. 14? 18. [Sborshchikov GS, Grishaeva SV Mathematical model of gas blowing through molten glass via a tuyere located below the melt level // Glass and Ceram. 2012. V. 69. N 5? 6.P. 194? 196.]

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Sborschikov G. S., Terekhova A. Yu. Structure of tuyere level zone in a bubbling layer bath furnace with gas injection through a tuyere located in a side wall below glass melt. Steklo i keramika. 2016:89(12):3-7. (in Russ). UDK 666.1