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

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1100
  • Pages: 3-8
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Heading: Equipment

The dependences for calculating the density of the heat flux into the environment from the outer surfaces of the enclosure of industrial furnaces: side walls, vault and hearth, obtained from the analysis of literature data, as well as as a result of mathematical modeling of a glass furnace, are presented. On the basis of a comparative analysis of these dependencies, performed for a glass furnace, recommendations were formulated for the selection and use of formulas for calculating the heat transfer coefficients from the outer surfaces of the fence in order to more adequately determine the heat balance of the furnaces.
Dr. Tech. Sciences S. K. POPOV 1 (This email address is being protected from spambots. You need JavaScript enabled to view it.), Cand. tech. Sciences A. V. KOROVYAKOVSKY 1, E. A. SERIKOV 1, 2 ; 1 FGBOU VO & # 171; National Research University & # 171; MPEI & # 187; (Russia, Moscow)
2 Almaty University of Energy and Communications (Kazakhstan, Almaty)
Kitaev BI, Zobnin BF, Ratnikov VF et al. Heat engineering calculations of metallurgical furnaces / under the general. ed. A.S. Telegin. M .: Metallurgy, 1970. Popov S. K., Ippolitov V. A. Solution of high-temperature heat technology problems in the Mathсad environment. M .: Publishing house. house MEI, 2009. Isachenko VP, Osipova VA, Sukomel AS Heat transfer. M .: Energoizdat, 1981. Handbook of heat exchangers: in 2 volumes. Vol. 1 / ed. B. S. Petukhova, V. K. Shikova. M .: Energoatomizdat, 1987. Tsvetkov F.F., Kerimov R.V., Velichko V.I. M .: Publishing house. house MEI, 2010. Heat and mass transfer: Fundamentals & Applications. 5th ed. McGraw-Hill Education, 2015. Kreith F., Black W. Basics of Heat Transfer. M .: Mir, 1983. Glazov VS, Khomchenko NV, Maskinskaya A. Yu. Introduction to the PHOENICS software complex / ed. V.S.Gla? Zova. Moscow: MPEI Publishing House, 2017. Glazov V.S., Khomchenko N.V., Arbatskiy A.A. Numerical modeling in the environment of PHOENICS and Mathcad / ed. V.S. Glazov. Moscow: MPEI Publishing House, 2017. Beerkens R., van der Schaaf I. Advanced Heating Techniques for Glass Melting // Technische Universiteit Eindhoven. Eindhoven, 5th March 2002. URL: https://www.scribd.com/ document / 120074994 / Advanced-heating-techniques-for-glass-melting Beerkens R., Muysendberg H. Comparative Study on Energy-Saving Technologies for Glass Furnaces // Glastech. Ber. 1992. V. 65. No. 8.P. 216? 224. url: https://pure.tue.nl/ws/files/ 2467163 / 621507.pdf

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Popov S. K., Korovyakovsky A. V., Serikov E. A. Calculation of Heat Loss from the Outer Surface of the Furnace Coat. Steklo i keramika. 2019:92(8):3-8. (in Russ). UDK 620.9:662.92.001.5