Combined solution of the problem of external heat transfer and heat transfer inside a gas radiation tube for thermal furnaces with a protective atmosphere / Lisienko V.G., Sklyar F.R., Kryuchenkov Yu.V., Toritsyn L.N., Volkov V.V., Tikhotskii A.I. // Journal of Engineering Physics. - 1986. - V. 50, l. 1. - P. 70-76.

ISSN:
00220841
Type:
Article
Abstract:
A general mathematical model of external heat transfer and heat transfer inside radiation tubes for furnaces with protective atmospheres (conjugate problem) is developed. An algorithm for solving the conjugate problem is developed. © 1986 Plenum Publishing Corporation.
Author keywords:
Index keywords:
FURNACES, HEATING; MATHEMATICAL MODELS; PROTECTIVE ATMOSPHERE; HEAT TRANSFER
DOI:
10.1007/BF00871415
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Affiliations S. M. Kirov Ural Polytechnic Institute, Sverdlovsk, Russian Federation
References Lisienko, V.G., Volkov, V.V., Kryuchenkov, Chertin, Improvement in the calculation of radiant heat transfer in through roller furnaces with radiation tubes (1977) Design, Construction, and Application of Radiation Tubes in Industry [in Russian], pp. 11-14. , Naukova Dumka, Kiev; Tymchak, V.M., (1970) Design Handbook for Rolled-Production Furnaces [in Russian], , V. M., Tymchak, Metallurgiya, Moscow; Telegin, A.S., (1970) Thermal-Engineering Calculations of Metallurgical Furnaces [in Russian], , A. S., Telegin, Metallurgiya, Moscow; Lisienko, V.G., Volkov, V.V., Kryuchenkov, Chertin, Zonal mathematical model of roller furnace with radiation tubes (1977) Design, Construction, and Application of Radiation Tubes in Industry [in Russian], pp. 86-88. , Naukova Dumka, Kiev; Nevskii, A.S., Lisienko, V.G., Mathematical modeling of radiation-transfer processes in metallurgical thermal engineering (1979) Inzh.-Fiz. Zh., 36 (2), pp. 255-259; Klekl', A.E., Mathematical model of the external heat transfer in the working space of a flame furnace and some of its properties (1968) Scientific Proceedings of the All-Union Scientific-Research and Design Institute of Ferrous Metallurgy, Energy, and Purification [in Russian], pp. 293-299. , Metallurgiya, Moscow; Lisienko, V.G., Zhuravlev, Kitaev, B.I., Investigating the radiation field with various flame lengths in flame furnaces by means of the zonal method (1972) Theory and Practice of Gas Combustion [in Russian], pp. 166-175. , Nedra, Leningrad; Zhuravlev, Lisienko, V.G., Taking account of the selectivity of emission in formulating zonal calculations of heat transfer in combustion chambers (1975) Izv. Sib. Otd. Akad. Nauk SSSR, Ser. Tekh. Nauk, 8, pp. 83-89; Lisienko, V.G., Heat-transfer processes in flame furnaces (1973) Flame Problems in Metallurgical Furnaces. Proceedings of an All-Union Scientific and Engineering Conference [in Russian], pp. 1-112. , Mosk. Inst. Stalii Splavov, Moscow; Zhuravlev, Lisienko, V.G., Kitaev, B.I., Improving the algorithm for zonal calculation of heat transfer in a flame furnace (1971) Inzh.-Fiz. Zh., 21 (5), pp. 829-835; Gosman, A.D., Pan, V.M., Ranchel, A.K., Spolding, D.V., Val'fshtein, M., (1972) Numerical Methods of Investigating the Flow of Viscous Liquid [Russian translation], , Mir, Moscow; A. D. Gosman and F. C. Lochwood, “Incorporation of a flux model for radiation into a finite-difference procedure for furnace calculation,” in: Proceedings of the Fourteenth International Symposium on Combustion, USA (1972), pp. 661–671; L. N. Toritsyn and F. R. Shklyar, Taking Account of Concentration Pulsations in Calculating a Turbulent Diffusional Flame [in Russian], Manuscript No. 2751-78 Deposited at VINITI (1978); Schlichting, H., (1967) Boundary Layer Theory, , McGraw-Hill, New York; Khalil, E.E., Spolding, D.B., Whitlaw, The calculation of local flow properties in two-dimensional furnaces (1975) Int. J. Heat Mass Trans., 18, pp. 775-791; Lisienko, V.G., (1979) Intensification of Heat Transfer in Flame Furnaces [in Russian], , Metallurgiya, Moscow
Correspondence Address Lisienko, V.G.; S. M. Kirov Ural Polytechnic Institute, Sverdlovsk, Russian Federation
Publisher Kluwer Academic Publishers-Plenum Publishers
Language of Original Document English
Abbreviated Source Title Journal of Engineering Physics
Source Scopus