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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 34, 1998 - Issue 6
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Original Articles

NUMERICAL SIMULATION OF THE BAKING OF POROUS ANODE CARBON IN A VERTICAL FLUE RING FURNACE

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Pages 571-598 | Received 05 Jan 1998, Accepted 19 Jun 1998, Published online: 15 Mar 2007

REFERENCES

  • C. Böttger , Ansätze für die Mathematische Modellierung des Brennprozesses von Groβformatigen Feinkömingen Graphitwerkstoffen , vol. A803 , pp. 71 – 84 , VED Deutcher Verlag fur Grundstoffindustrie , 1990 .
  • Fluent Inc. , FLUENT User Manual , 1993 .
  • O. Jakobsen , O. Lid , P. A. Schneider , and O. Stensø , A New Ring Furnace Concept Design and Operation , in Light Metals 1987 , pp. 497 – 503 , 1987 .
  • R. T. Bui , A. Charette , and T. Bourgeois , Simulating the Process of Carbon Anode Baking Used in the Aluminum Industry , Metall. Trans. B , vol. 15B , pp. 487 – 492 , 1984 .
  • R. T. Bui , S. Peter , A. Charette , A. D. Tomsett , and V. Potocnik , Riedhammer Furnace Underlid Heat Transfer Analysis , in Light Metals 1992 , pp. 731 – 738 , 1992 .
  • R. T. Bui , S. Peter , A. Charette , A. D. Tomsett , and V. Potocnik , Modeling of Heat Transfer and Gas Flow in the Vertical Flue Anode Baking Furnace , in Light Metals 1995 , pp. 663 – 671 , 1995 .
  • Ø . Gundersen and J. G. Balchen , Modeling and Simulation of an Anode Carbon Baking Furnace , Model. Ident. Cont. , vol. 16 , pp. 3 – 33 , 1995 .
  • Y. S. Kocaefe , E. Dernedde , D. Kocaefe , R. Quellet , Q. Jiao , and W. F. Crowell , A 3d Mathematical Model for the Horizontal Anode Baking Furnace , in Light Metals 1996 , pp. 529 – 534 , 1996 .
  • M. Jacobsen and M. C. Melaaen , Heat and Mass Transfer in Anode Materials During Baking , in Light Metals 1995 , pp. 681 – 690 , 1995 .
  • Ø. Gundersen, Topics in Carbon Modelling with Application to Carbon Anode Baking , Ph.D. thesis, Department of Engineering Cybernetics , Norwegian Institute of Technology , 1998 . ( To be published in 1998 as Report 96–48–W .)
  • M. Jacobsen Ø. Gundersen, Anode Property Development During Heat Treatment , in Light Metals 1997 , pp. 597 – 604 , 1997 .
  • S. Whitaker , Simultaneous Heat, Mass and Momentum Transfer in Porous Media A Theory of Drying , Adv. Heat Transfer , vol. 13 , pp. 119 – 203 , 1977 .
  • M. Kaviany , Principles of Heat Transfer in Porous Media , Springer-Verlag , New York , 1991 .
  • A. Matínez-Alonso , J. Bermejo , and J. M. D. Tascón , Suitability of Thermogravimetry and Differential Thermal Analysis Techniques for Characterization of Pitches , FUEL , vol. 71 , pp. 611 – 617 , 1992 .
  • E. L. Cussler , Multicomponent Diffusion , Elsevier Scientific , New York , 1976 .
  • E. N. Fuller , P. D. Schettler , and J. C. Giddings , A New Method for Prediction of Binary Gas-Phase Diffusion Coefficients , Ind. Eng. Chem. , vol. 58 , no. 5 , pp. 19 – 27 , 1966 .
  • A. Seltveit , Ildfaste Materialer , Tapir , 1992 .
  • C. J. Greankoplis , Transport Processes and Unit Operations , Prentice-Hall , Englewood Cliffs , N.J. , 1993 .
  • H. S. Fogler , Elements of Chemical Reaction Engineering, , 2nd ed ., Prentice-Hall International , 1987 .
  • C. R. Wilke , Diffusional Properties of Multicomponent Gases , Chem. Eng. Progr. , vol. 46 , pp. 95 – 104 , 1950 .
  • D. Kunii and J. M. Smith , Heat Transfer of Porous Rocks , AIChEJ. , vol. 6 , pp. 71 – 78 , 1960 .
  • M. Jacobsen and T. Log , Thermal Conductivity of Green Carbon Materials During Baking , in Light Metals 1995 , pp. 673 – 679 , 1995 .
  • F. C. Lockwood and N. G. Shah , A New Radiation Solution Method for Incorporation in General Combustion Prediction Procedures , in 18th Symposium (International) on Combustion , pp. 1405 – 1414 , The Combustion Institute , 1981 .
  • M. da Graça Carvalho , T. Farias , and P. Fontes , Predicting Radiative Heat Transfer in Absorbing, Emitting, and Scattering Media Using the Discrete Transfer Method , Fun-dam. Radiat. Heat Transfer , ASME HTD vol. 160 , pp. 17 – 26 , 1991 .
  • H. Marsh , Introduction to Carbon Science , Butterworths , 1989 .
  • A. Charette , J. Ferland , D. Kocaefe , P. Couderc , and J. L. Saint-Romain , Experimental and Kinetic Study of Volatile Evolution from Impregnated Electrodes , FUEL , vol. 69 , pp. 194 – 202 , 1990 .
  • F. Tremblay and A. Charette , Cinétique de Dégagement des Matieres Volatiles lors de la Pyrolyse d'Électrodes de Carbone Industrielles , Can. J. Chem. Eng. , vol. 66 , pp. 86 – 96 , 1988 .
  • E. Dernedde , A. Charette , T. Bourgeois , and L. Castonguay , Kinetic Phenomena in Ring Furnaces , in Light Metals 1986 , pp. 589 – 592 , 1986 .
  • C. K. Westbrook and F. L. Dryer , Chemical Kinetic Modeling of Hydrocarbon Combustion , Progr. Energy Combust. Sci. , vol. 10 , pp. 1 – 57 , 1984 .
  • F. L. Dryer and I. Glassman , High Temperature Oxidation of CO and CH4 , in 14th Symposium (International) on Combustion , pp. 987 – 1003 , The Combustion Institute , 1973 .
  • R. C. Flagan and J. H. Seinfeld , Fundamentals of Air Pollution Engineering , Prentice-Hall , Englewood Cliffs , N.J. , 1988 .
  • J. B. Howard , G. C. Williams , and D. H. Fine , Kinetics of Carbon Monoxide Oxidation in Post-Flame Gases , in 14th Symposium (International) on Combustion , pp. 975 – 986 , The Combustion Institute , 1973 .
  • B. F. Magnussen and B. H. Hjertager , On Mathematical Modeling of Turbulent Combustion with Special Emphasis on Soot Formation and Combustion , in Sixteenth Symposium (International) on Combustion , pp. 719 – 729 , The Combustion Institute , 1976 .
  • F. P. Incropera , D. P. De Witt , Fundamentals of Heat and Mass Transfer , John Wiley , New York , 1990 .
  • M. Asperheim , A. Bosdal , T. Naterstad , and A. Werge-Olsen , Dubal performance evaluation 1995, Technical Report TEK96/119, Hydro Aluminium, Teknologisenter Årdal , 1996 .
  • D. R. Lide , editor, Handbook of Chemistry and Physics , CRC Press , Boca Raton , Fla. , 1993 .
  • K. K. Kuo , Principles of Combustion , John Wiley , New York , 1986 .
  • Address correspondence to Mona Jacobsen, Department of Thermal Energy and Hydro Power, Norwegian University of Science and Technology, Kolbj0rn Hejes vei la, N-7034 Trondheim, Norway.

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