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Abstrakty
Selected results of mathematical modelling and computer simulation of transient conjugate heat transfer in a vertical contraflow glass furnace regenerator are reported. The problem is solved three-dimensionally (3D) using the ANSYS 8.0/FLOTRAN program. The main regenerator fluid flow and thermal fields about a cyclic equilibrium of the regenerator are visualized. Heat and fluid flow parameters for the regenerator's cyclic equilibrium are presented by Tm=Tm(H',t); Tm,f=Tm,f(H',t); hm=hm(H',t); V=V(H',t); k=k(H',t) and ε=ε(H',t) graphics. Remarks about transient heat transfer in this kind of regenerators are made based on the obtained numerical values and relationships.
Wydawca
Rocznik
Tom
Strony
143--151
Opis fizyczny
Bibliogr. 9 poz., rys., tab.
Twórcy
autor
- Department of Silicate Technology, University of Chemical Technology and Metallurgy, Kl. Ohridsky 8, Sofia, Bulgaria
autor
- Department of Silicate Technology, University of Chemical Technology and Metallurgy, Kl. Ohridsky 8, Sofia, Bulgaria
- Department of Silicate Technology, University of Chemical Technology and Metallurgy, Kl. Ohridsky 8, Sofia, Bulgaria
Bibliografia
- [1] Likov A V 1978 Heat and Mass Transfer, Moscow, Energia
- [2] Hausen H 1976 Warmeurbertragung im gegenstrom, gleichstrom und kreuzstrom, SpringerVerlag, Berlin/Heidelberg
- [3] Muralidhar K and Suzuki K 2001 Int. Journal of Heat Mass Transfer 44 2493
- [4] Muralikrishna S 1999 Trans I ChemE 77A (March) 131
- [5] Razelos P and Benjamin M K 1978 Int. Journal of Heat Mass Transfer 21 735
- [6] Romie F E 1993 Trans. ASME J. of Heat Transfer 115 1064
- [7] Willmott A J and Duggan R C 1980 Int. J. of Heat and Mass Transfer 23 655
- [8] Radex 1996 RADEX in the Glass Industry 6 3
- [9] Bradshaw P, Cebeci T and Whitelaw J H 1981 Engineering Calculation Methods for Turbulent Flow, London, Academic Press, pp. 211–255
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0020-0029