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

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1094
  • Pages: 29-32
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Heading: Equipment

Using the methods of mathematical modeling, a theoretical and computational study of thermal processes in regenerative heat exchangers of glass-making furnaces has been carried out. Based on the data obtained, recommendations were developed to improve the efficiency and service life of heat exchangers of this type. These recommendations can be used both in the design of new glass melting furnaces and in the modernization of existing glass melting complexes.
Tovazhnyansky L.L., Koshelnik V.M., Solovey V.V., Koshelnik A.V. Integrated energy-saving heat technologies in glass production: monograph. Kharkov: NTU? KhPI ?, 2008.630 p. Kozlov A.S. Heat engineering of regenerative glass-melting furnaces. Moscow: Legprombytizdat, 1990.144 p. Goikhman V. Yu., Ruslov V. N., Kostyrya V. A. Stove heat engineering in glass production. Kharkov: Fact, 1997.288 p. Brunklaus JH, Stepanek FJ Industrieoefen. Bau und Betrieb. Vulkan-Verlag. Essen, 1994.800 s. Hausen H. Heat transfer in counterflow, forward flow and crossflow: trans. with him. Moscow: Energoizdat, 1981.384 p. Koshelnik A.V., Lavinsky D.V., Khavin E.V. et al. Development of a mathematical model of regenerative heat exchangers for energy and heat supply systems for high-temperature heat-technological units // Bulletin of the National Technical University? ?. 2015.? 16 (1125). S. 116? 124. Kosheln? K OV Methodology for the stemming of the universesal computational complex for the modeling of regenerative heat exchangers in high-temperature melting units? In // East European Journal of Advanced Technologies. 2007.? 2/3 (26). S. 47? 50.

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Koshelnik A. V., Pugachova T. N., Kruglyakova O. V., Pavlova V. G., Dolobovskaya O. V. Improvement of heat recovery exchangers performance in glass kilns. Steklo i keramika. 2019:92(2):29-32. (in Russ). UDK 666.1.031.2:669.183.213