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Drying Technology
An International Journal
Volume 19, 2001 - Issue 9
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Original Articles

A DYNAMIC MODEL WITH ON-LINE IDENTIFICATION FOR ROTARY SUGAR DRYING PROCESSES

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Pages 2103-2129 | Published online: 06 Feb 2007

REFERENCES

  • Brasil , F. C. and Seckler , M. M. A model for the rotary drying in granular fertilisers . Proc. Sixth International Drying Symposium IDS'88 . Versaille. pp. 247 – 256 .
  • Cao , W. F. and Langrish , T. A.G. 1999 . Comparison of residence time models for cascading rotary dryers . Drying Technology , 17 ( 4&5 ) : 825 – 836 .
  • Cao , W. F. and Langrish , T. A.G. 2000 . The development and validation of a system model for a countercurrent cascading rotary dryer . Drying Technology , 18 ( 1&2 ) : 99 – 115 .
  • Chandra , P. K. and Singh , R. P. Simulation of parboiled rice drying in a co-current flow rotary drier . Proc. Forth International Drying Symposium IDS'84 . pp. 247 – 256 .
  • Douglas , P. L. , Kwade , A. , Lee , P. L. and Mallick , S. K. 1993 . Simulation and modelling of a rotary sugar drier for sugar crystalline . Drying Technology , 11 ( 1 ) : 129 – 155 .
  • Duchesen , C. , Thibault , J. and Bazin , C. 1996 . Dynamics and assessment of some control strategies of a simulated industrial rotary dryer . Ind. Eng. Chem. Res. , 35 : 2334 – 2341 .
  • Friedman , S. J. and Marshall , W. P. 1949 . Studies in rotary drying. Part 1 and 2 . Chemical Engineering Progress , 45 ( 8&9 ) : 482–493 and 573 – 588 .
  • Hatzilyberis , K. S. and Androutsopoulos , G. P. 1999 . An RTD study for the flow of lignite particles through a pilot rotary dryer, Part I: Bare drum case; Part II: Flighted drum case . Drying Technology , 17 ( 4&5 ) : 745–757 and 759 – 774 .
  • Hirata , M. , Ohe , S. and Hagahama , K. 1975 . Computer Aided Data Book of Vapour-Liquid Equilibria 11 Tokyo : Kodansha Scientific Book .
  • Kamke , F. A. and Wilson , J. B. 1986 . Computer simulation of a rotary drier. Part I and II . AIChE Journal , 32 ( 2 ) : 263 – 275 .
  • Lebas , E. , Hanrot , F. , Ablitzer , D. and Houzelot , J.-L. 1995 . Experimental study of residence time, particle movement and bed depth profile in rotary kilns . Can. J. Chem. Eng. , 73 : 173 – 180 .
  • Matchett , A. J. and Baker , C. G.J. 1988 . Particle residence times in cascading rotary dryers, Part 2 – Application to the two stream model to experimental and industrial data . J. Separ. Proc. Technol. , 9 : 5 – 13 .
  • Papadakis , S. E. , Langrish , T. A.G. , Kemp , I. C. and Bahu , R. E. 1994 . Scale-up of cascading rotary dryers . Drying Technology , 12 ( 1&2 ) : 259 – 277 .
  • Perry , H. R. 1997 . Chemical Engineers Handbook , 7th Ed. New York : McGraw-Hill .
  • Ranz , W. E. and Marshall , W. R. 1952 . Evaporation from drops. Part I and II . Chemical Engineering Progress , 48 ( 3 ) : 141–146 and 173 – 180 .
  • Saeman , W. C. and Mitchett , T. R. Jr. 1954 . Analysis of rotary dryer and cooler performance . Chem. Eng. Prog. , 50 ( 9 ) : 467 – 475 .
  • Shahhosseini , S. , Cameron , I. T. and Wang , F. Y. 1998 . Variable interactions and solid transport dynamic modelling of rotary drum sugar drying . Proc. Eleventh International Drying Symposium, IDS'98 . 1998 . pp. 295 – 302 . Ziti Editions .
  • Shahhosseini , S. , Cameron , I. T. and Wang , F. Y. 2000 . A simple dynamic model for solid transport in rotary dryery dryers . Drying Technology , 18 ( 4&5 ) : 867 – 886 .
  • Sharples , L. , Gilinkin , P. G. and Warne , R. 1964 . Computer simulation of rotary driers . Trans. Instn. Chem. Engrs. , 42 : 275 – 284 .
  • Shene , C. , Cubillos , F. , Perez , R. and Alvarez , P. I. 1996 . Modelling and simulation of a direct contact rotary dryer . Drying Technology , 14 ( 10 ) : 2419 – 2433 .
  • Wang , F. Y. , Cameron , I. T. , Litster , J. D. and Douglas , P. L. 1993 . A distributed parameter approach to the dynamics of rotary drying processes . Drying Technology , 11 ( 7 ) : 1641 – 1656 .
  • Wang , F. Y. , Cameron , I. T. and Litster , J. D. 1995 . Further theoretical studies on rotary drying processes represented by distributed systems . Drying Technology , 13 ( 3 ) : 737 – 751 .

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