BIBLIOGRAPHY OF MATHEMATICAL MODELS FOR DRYING · the parameters of hydrodynamic models of...

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Morhl Modelling, Vol. 9.No. 9,pp.713-720, 1987 Printed in Great Britain. 0270-0255/87 $3.00 + 0.00 Pergamon Journals Ltd BIBLIOGRAPHY OF MATHEMATICAL MODELS FOR DRYING C. W. HALL National Science Foundation, Washington, DC20550, U.S.A. (Received June 1986) Communicated by X. J. R. Avula Agarwal P. K., Genetti W. E. and Lee Y. Y. (1984) Pseudo steady state receding core model for drying with shrinkage of low ranked coals: Chem. Engng Comm&. 27( l/2), 9-u. Aiken F. E. and Polsak E. M. (1982) A model for rotarv dryer computation. In Drying”82 (Edited by Mujumdar A. S.), pp. 32-35. Hemisphere, New York. Allerton J., Brownell L. E. and Katz D. L. (1949) Through- drying of porous media. Chem. Engng Prog. 4S(lO), 619-635. deep-bed of biological products under varying inlet air conditions. J. agric. Engng Res. 12(4), 297-307. Bakker-Arkema F. W., Lerew L. E., Deboer S. F. and Roth M. G. (1972). Grain drying simulation. Research Report 224, Agricultural Experiment Station, Michigan State Univ., E. Lansing, Mich. Bakker-Arkema F. W., Farmer D. M. and Lerew L. E. (1973) Optimum grain dryer design through simulation. Ann. Technol. Agric. 22(3), 275-290. Alvarez-Cuenca M. and Nerenberg M. A. (1981) Plug flow model for mass transfer in three-phase fluidized beds and bubble column (PFM). Can J. them. Engng 59(6), 739-745. Bakker-Arkema F. W., Brook R. C. and Lerew L. E. (1978) Cereal grain drying. In Advances in Cereal Science ond Technology, Vol II (Edited by Pomeranz Y.), pp. I-90. AACC, St Paul, Minn. Anderson M. E., Bern C. J. and Wilcke W. F. (1984) Simulation of corn desiccant preparation using solar energy. Trans. ASAE 27(l), 186. Arnason G. and Crowe C. T. (1980) Assessment of numerical models for spray-drying. In Drying ‘80, Vol. 2 (Edited by Mujumdar A. S.), pp. 410-416. Hemisphere, New York. Ashworth J. C. and Hill M. C. (1980) Use of simulation techniques to evaluate strategies for improvement of industrial multizone through-circulation trolley dryer. In Drying ‘80, Vol. 2 (Edited by Mujumdar A. S.), pp. 508- 522. Hemisphere, New York. Ashworth J. C. and Keey R. B. (1972) On binary diffusion. Chem. Engng Sci. 27(7), 1383- 1394. Babbitt J. D. (1950) On the differential equations of diffusion. Can J. Res. 28A, 449-474. Bala B. K. and Woods J. L. (1984) Simulation of deep bed malt drying. J. agric. Engng Res. 30, 235-244. Balazs T. (1980) Dynamic model of the flow-through dry- ing process. In Drying ‘80 (Edited by Mujumdar A. S.), pp. 1 I l-115. Hemisphere, New York. Barre H. J. and Hamdy M. Y. (1974) Optimal filling rates for in-storage drying. Trans. ASAE 17(4), 705-710. Barre H. J., Baughman G. R. and Hamdy M. Y. (1971) Application of the logarithmic model to cross-flow deep- bed grain drying. Trans. ASAE l4(6), 1061-1064. Baughman G. R., Hamdy M. Y. and Barre H. J. (1971) Analog computer simulation of deep bed drying of grain. Trans. ASAE 14(6), 1058-1060. Baughman G. R., Hamdy M. Y. and Barre H. J. (1973) Babenko V. E. (1979) The use of mathematical modeling methods in the development of processes involving drying in suspended bed equipment. Soviet them. Ind. 11(6), 398-400. Experimental study and simulation of concurrent-flow dryers. Trans. ASAE 16(5). 890-894. Beard J. N. and Beckwith W. F. (1978) Mathematical modeling of textile tenter frame dryers. Presented at 7lst A. Mtg AIChE, Miami Beach. Fla. Babenko V. E., Oigenblik A. A., Gavrilov G. P., Romankov P. G. and Rashkovkaya N. B. (1969) Mathematical model for drying and granulation of solutions in a fluidized bed. Theor. Fdns them. Engng 3(6), 720-727. Babenko V. E., Oigenblik A. A., Nazarov V. P. and Kuznet- sov L. P. (1972) Mathematical modeling of continuous processes for the drying of free-flowing products. Theor. Fdns them. Engng 6(3), 356-361. Becker A. and Sallans H. (1961) ‘Drying wheat in a spouted bed on the continuous moisture diffusion controlled drying of solid particles in a well-mixed, isothermal bed. Chem. Engng Sci. 13(3), 97-112. Bedford A. and Drumheller D. S. (1979) Variational theory of porous media (using Hamilton’s extended variational principle). Int. J. Solids Struct. lS(l2), 967-980. Belopol’skii M. S. and Baumshtein I. P. Using digital computers to design drying ovens. Glass Ceram. 39(11), 552-556. Babenko V. E., Oigenblik A. A., Nazarov V. P., Zhiganova E. M. and Vlodov Y. M. (1976) Comoutation of the residence time distribution of particles in an apparatus as a tool in calculating continuous drying processes of free flowing materials. Theor. Fdns them. Engng 8(3), 342-350. Babenko V. E., Nazarov V. P., Oigenblik A. A.. Zhiganova E. M. and Kuznetsov L. P. (1976) Method for determining the parameters of hydrodynamic models of fluidized-bed dryers. Theor. Fdns them. Engng 10(5), 655-660. Baeyens J. and Geldart D (1980) Modelling approach to the effect of equipment scale on fluidized bed heat transfer data. J. Powder Bulk Solids Technol. 4(4), 1-9. Bailey P. H. (1963) Farm drying ofgrass and grain. Presented at Cons. on Drying, Inst. Fuel, Republic of Ireland. Bakker-Arkema F. W., Bickert W. G. and Patterson R. J. (1967) Heat and mass transfer during the cooling of a Beran Z. and Lutcha J. (1975) Optimizing particle residence time in a fluidized bed dryer. Chem. Engr (Land.) 303, 678-681. Berger D. and Pei D. C. T. (1973) Drying of hydroscopic capillary porous solids-a theoretical approach. Int. J. Heat Mass Transfer 16(2), 293-302. Blokh A. G., Bazarov S. M. and Nakhman Yu V. (1967) Some general laws governing droplet size distribution on atomization of a liquid. Therm. Ennna 147). 45-50. Bloome P. D. and Shove G. E. (1971j Near equilibrium simulation of shelled corn drying. Trans. ASAE 14(4), 709-712. Bloome P. D. and Shove G. C. (1972) Simulation of low temperature drying of shelled corn leading to optimization. Trans. ASAE 15(2), 310-316. 713

Transcript of BIBLIOGRAPHY OF MATHEMATICAL MODELS FOR DRYING · the parameters of hydrodynamic models of...

Page 1: BIBLIOGRAPHY OF MATHEMATICAL MODELS FOR DRYING · the parameters of hydrodynamic models of fluidized-bed dryers. Theor. Fdns them. Engng 10(5), 655-660. Baeyens J. and Geldart D (1980)

Morhl Modelling, Vol. 9. No. 9, pp. 713-720, 1987 Printed in Great Britain.

0270-0255/87 $3.00 + 0.00 Pergamon Journals Ltd

BIBLIOGRAPHY OF MATHEMATICAL MODELS FOR DRYING

C. W. HALL

National Science Foundation, Washington, DC20550, U.S.A.

(Received June 1986)

Communicated by X. J. R. Avula

Agarwal P. K., Genetti W. E. and Lee Y. Y. (1984) Pseudo steady state receding core model for drying with shrinkage of low ranked coals: Chem. Engng Comm&. 27( l/2), 9-u.

Aiken F. E. and Polsak E. M. (1982) A model for rotarv dryer computation. In Drying”82 (Edited by Mujumdar A. S.), pp. 32-35. Hemisphere, New York.

Allerton J., Brownell L. E. and Katz D. L. (1949) Through- drying of porous media. Chem. Engng Prog. 4S(lO), 619-635.

deep-bed of biological products under varying inlet air conditions. J. agric. Engng Res. 12(4), 297-307.

Bakker-Arkema F. W., Lerew L. E., Deboer S. F. and Roth M. G. (1972). Grain drying simulation. Research Report 224, Agricultural Experiment Station, Michigan State Univ., E. Lansing, Mich.

Bakker-Arkema F. W., Farmer D. M. and Lerew L. E. (1973) Optimum grain dryer design through simulation. Ann. Technol. Agric. 22(3), 275-290.

Alvarez-Cuenca M. and Nerenberg M. A. (1981) Plug flow model for mass transfer in three-phase fluidized beds and bubble column (PFM). Can J. them. Engng 59(6), 739-745.

Bakker-Arkema F. W., Brook R. C. and Lerew L. E. (1978) Cereal grain drying. In Advances in Cereal Science ond Technology, Vol II (Edited by Pomeranz Y.), pp. I-90. AACC, St Paul, Minn.

Anderson M. E., Bern C. J. and Wilcke W. F. (1984) Simulation of corn desiccant preparation using solar energy. Trans. ASAE 27(l), 186.

Arnason G. and Crowe C. T. (1980) Assessment of numerical models for spray-drying. In Drying ‘80, Vol. 2 (Edited by Mujumdar A. S.), pp. 410-416. Hemisphere, New York.

Ashworth J. C. and Hill M. C. (1980) Use of simulation techniques to evaluate strategies for improvement of industrial multizone through-circulation trolley dryer. In Drying ‘80, Vol. 2 (Edited by Mujumdar A. S.), pp. 508- 522. Hemisphere, New York.

Ashworth J. C. and Keey R. B. (1972) On binary diffusion. Chem. Engng Sci. 27(7), 1383- 1394.

Babbitt J. D. (1950) On the differential equations of diffusion. Can J. Res. 28A, 449-474.

Bala B. K. and Woods J. L. (1984) Simulation of deep bed malt drying. J. agric. Engng Res. 30, 235-244.

Balazs T. (1980) Dynamic model of the flow-through dry- ing process. In Drying ‘80 (Edited by Mujumdar A. S.), pp. 1 I l-115. Hemisphere, New York.

Barre H. J. and Hamdy M. Y. (1974) Optimal filling rates for in-storage drying. Trans. ASAE 17(4), 705-710.

Barre H. J., Baughman G. R. and Hamdy M. Y. (1971) Application of the logarithmic model to cross-flow deep- bed grain drying. Trans. ASAE l4(6), 1061-1064.

Baughman G. R., Hamdy M. Y. and Barre H. J. (1971) Analog computer simulation of deep bed drying of grain. Trans. ASAE 14(6), 1058-1060.

Baughman G. R., Hamdy M. Y. and Barre H. J. (1973)

Babenko V. E. (1979) The use of mathematical modeling methods in the development of processes involving drying in suspended bed equipment. Soviet them. Ind. 11(6), 398-400.

Experimental study and simulation of concurrent-flow dryers. Trans. ASAE 16(5). 890-894.

Beard J. N. and Beckwith W. F. (1978) Mathematical modeling of textile tenter frame dryers. Presented at 7lst A. Mtg AIChE, Miami Beach. Fla.

Babenko V. E., Oigenblik A. A., Gavrilov G. P., Romankov P. G. and Rashkovkaya N. B. (1969) Mathematical model for drying and granulation of solutions in a fluidized bed. Theor. Fdns them. Engng 3(6), 720-727.

Babenko V. E., Oigenblik A. A., Nazarov V. P. and Kuznet- sov L. P. (1972) Mathematical modeling of continuous processes for the drying of free-flowing products. Theor. Fdns them. Engng 6(3), 356-361.

Becker A. and Sallans H. (1961) ‘Drying wheat in a spouted bed on the continuous moisture diffusion controlled drying of solid particles in a well-mixed, isothermal bed. Chem. Engng Sci. 13(3), 97-112.

Bedford A. and Drumheller D. S. (1979) Variational theory of porous media (using Hamilton’s extended variational principle). Int. J. Solids Struct. lS(l2), 967-980.

Belopol’skii M. S. and Baumshtein I. P. Using digital computers to design drying ovens. Glass Ceram. 39(11), 552-556.

Babenko V. E., Oigenblik A. A., Nazarov V. P., Zhiganova E. M. and Vlodov Y. M. (1976) Comoutation of the

.

residence time distribution of particles in an apparatus as a tool in calculating continuous drying processes of free flowing materials. Theor. Fdns them. Engng 8(3), 342-350.

Babenko V. E., Nazarov V. P., Oigenblik A. A.. Zhiganova E. M. and Kuznetsov L. P. (1976) Method for determining the parameters of hydrodynamic models of fluidized-bed dryers. Theor. Fdns them. Engng 10(5), 655-660.

Baeyens J. and Geldart D (1980) Modelling approach to the effect of equipment scale on fluidized bed heat transfer data. J. Powder Bulk Solids Technol. 4(4), 1-9.

Bailey P. H. (1963) Farm drying ofgrass and grain. Presented at Cons. on Drying, Inst. Fuel, Republic of Ireland.

Bakker-Arkema F. W., Bickert W. G. and Patterson R. J. (1967) Heat and mass transfer during the cooling of a

Beran Z. and Lutcha J. (1975) Optimizing particle residence time in a fluidized bed dryer. Chem. Engr (Land.) 303, 678-681.

Berger D. and Pei D. C. T. (1973) Drying of hydroscopic capillary porous solids-a theoretical approach. Int. J. Heat Mass Transfer 16(2), 293-302.

Blokh A. G., Bazarov S. M. and Nakhman Yu V. (1967) Some general laws governing droplet size distribution on atomization of a liquid. Therm. Ennna 147). 45-50.

Bloome P. D. and Shove G. E. (1971j Near equilibrium simulation of shelled corn drying. Trans. ASAE 14(4), 709-712.

Bloome P. D. and Shove G. C. (1972) Simulation of low temperature drying of shelled corn leading to optimization. Trans. ASAE 15(2), 310-316.

713

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714 C. W. HALL

Bloore C. G. and Boag I. F. (1982) A simulation model of a Carter J. W. (1968) Some aspects of the prediction of tall-form spray drier. N.Z. JI Dairy Sci. Technol. 17(2), performance of a large air-dryer. Trans. Instn them. Engrs 121-134. 46, T222-T224.

Bogatov B. A. (1972) Optimization of the drying process in air-eas drvers. Theor. Fdns them. Enann 6(4). 496-500.

Belles-W. L.‘and Fair J. R. (1982) Improied’ mass-transfer model enhances packed-column design. Chem. Engr 89(14), 109-116.

Carter J. W. and Barrett D. J. (1973) A comparative study for fixed bed adsorption of water vapor by activated alumina, silica gel, and molecular sieve adsorbents. Trans. Instn them. Engrs 51, 75-81.

Bowden P. J., Lamond W. J. and Smith E. A. (1983) Simulation of near-ambient grain drying. 1. Comparison of simulations with experimental results. J. agric. Engng Res. 28(4), 279.

Carter J. W. and Wyszynsk M. L. (1983) The pressure swing adsorption drying of compressed air. Chem. Engng Sci. 38(7), 1093- 1099.

Bowen R. M. (1980) Incompressible porous media models by use of the theory of mixtures. Int. J. Engng Sci. 18(9), 1129-l 148.

Carter J. W., Husain H. and Barrett D. J. (1974) A short cut design technique for gas purification by fixed bed adsorption methods. Dech. Monograph No. 73.

Ceaglske N. H. and Hougen 0. A. (1937) Drying of granular

Bowen R. M. (1982) Compressible porous media models by use of the theory of mixtures. Inc. J. Engng Sci. 20(6), 697-735.

solids. lnd. Engng Chem. 29(7), 805-813. Charlesworth D. H. and Marshall W. R. (1960) Evaporation

from drops containing dissolved solids. AIChE ‘J/ 60(l). 9-23.

Bozicevic J. and Kraljevic M. (1982) Modelling of drying of an abrasive-naper strip. Trans. Inst. Meas. Control 4(3), 133-138. - . -

Chen C. S. and Johnson W. H. (1969) Kinetics of moisture movement in hygroscopic materials. Trans. ASAE 12(l), 109-l 13; 12(4), 478-481.

Bridges T. C., Loewer 0. J. Jr, Walker J. N. and Overhults D. G. (1979) A computer model for evaluating corn harvesting, handling, drying and storage systems. Trans. ASAE 22(3), 618-621, 629.

Bridges T. C., Walton L. R. and Ross I. J. (1981) Deep-layer drying model for burley tobacco curing. Trans. ASAE 24(6), 1608-1612.

Cheng C. C. and Fan L. T. (1982) Shallow fluidized beds with lateral solids flow-a review and the derivation of a general model. Report 83, Inst. Syst. Des. Optim.

Chhinnan M. S. (1984) Evaluation of selected mathematical models for describing thin-layer drying of in-shell pecans. Trans. ASAE 27, 610.

Bridges T. C., White G. M., Ross I. J. and Loewer 0. J. Jr (1982) Computer aid for management of on-farm drying systems. Trans. ASAE 2S(3), 811-815.

Brook R. C. and Bakker-Arkema F. W. (1978) Simulation for design of commercial concurrent flow grain dryers. Trans. ASAE 21(5), 978-981.

Chhinnan M. S. and Young J. H. (1978) Computer simulation of bulk drying of peanut pods. Trans. ASAE 21(Z), 354- 360, 366.

Brook R. C. and Bakker-Arkema F. W. (1978) Dynamic programming for process optimization 1. An algorithm for design of multi-stage grain dryers. J. Fd Process Engng 2. 199-211.

Brook R. C. and Bakker-Arkema F. W. (1980) Concurrent flow drvina of food erains. In Drvinn ‘80, Vol. 2 (Edited by Mujumdar A. S.), pp. 263-271. Hemisphere, New York.

Brook R. C. and Bakker-Arkema F. W. (1980) Design of multi-stage corn dryers using computer optimization. Trans. ASAE 23(l), 200-203.

Chu S. T. and Hustrulid A. (1968) Numerical solution of diffusion equations. Trans. ASAE 11(5), 705-708, 715.

Chu S. T. and Hustrulid A. (1968) General characteristics of variable difhtsivity process and the dynamic equilibrium moisture content. Trans. ASAE 11(5), 709-710, 715.

Chung S. F. (1972; 1973) Mathematical model and optimiz- ation of drving process for a through-circulation dryer. Con .I. chek in&g 50(5), 657-662; 31(2). 262.

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Crank J. (19581 Some mathematical diffusion studies relevant

Brooker D. B. (1967) Mathematical model of the psychro- metric chart, Trans. ASAE 10(4), 558-560, 563.

Brooker D. B., Bakker-Arkema F. W. and Hall C. W. (1974) Drying Cereal Grains. AVI, Westport, Conn.

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to dehydration. In Fundamental Aspects of the Dehydration of Foddstufi. Society of the Chemical Industry, London.

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boundary conditions. Chem. Engng Sci. 24(S), 815-828.

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