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Drying Technology
An International Journal
Volume 27, 2009 - Issue 2
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Original Articles

Drying of Wheat Based on the Non-Equilibrium Thermodynamics: A Numerical Study

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Pages 306-313 | Published online: 09 Feb 2009

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Read on this site (3)

Gisele Tessari Santos, Mauri Fortes, Rafael Pinheiro Amantea, Wanyr Romeo Ferreira & José Helvecio Martins. (2018) Irreversible thermodynamics analysis of ellipsoidal wheat kernel drying, aiming at the evaluation of phenomenological properties. Drying Technology 36:9, pages 1117-1127.
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Gisele Tessari Santos, Mauri Fortes, José Helvecio Martins & Paulo Marcos de Barros Monteiro. (2013) Convective Drying Analysis of a Single Wheat Kernel Based on an Irreversible Thermodynamics Model. Drying Technology 31:16, pages 1979-1993.
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Wilton Pereira da Silva, CleideM. D. P. S. e Silva, VeraS. O. Farias & JosivandaP. Gomes. (2012) Diffusion Models to Describe the Drying Process of Peeled Bananas: Optimization and Simulation. Drying Technology 30:2, pages 164-174.
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Articles from other publishers (6)

João C. S. Melo, João M. P. Q. Delgado, Wilton P. Silva, Antonio Gilson B. Lima, Ricardo S. Gomez, Josivanda P. Gomes, Rossana M. F. Figueirêdo, Alexandre J. M. Queiroz, Ivonete B. Santos, Maria C. N. Machado, Wanderson M. P. B. Lima & João E. F. Carmo. (2021) Non-Equilibrium Thermodynamics-Based Convective Drying Model Applied to Oblate Spheroidal Porous Bodies: A Finite-Volume Analysis. Energies 14:12, pages 3405.
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Edna G. Silva, Ricardo S. Gomez, Josivanda P. Gomes, Rossana M. F. Figueirêdo, Alexandre J. M. Queiroz, Wilton P. Silva, Ângela M. Santiago, Antonio D. B. Macedo, João P. L. Ferreira, Ítalo A. Gomes & Antonio G. B. Lima. (2020) Convective and Microwave Assisted Drying of Wet Porous Materials with Prolate Spheroidal Shape: A Finite-Volume Approach. Agriculture 10:11, pages 507.
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J.C. Soares de Melo, Ricardo Soares GomezJ.B. Silva Júnior, A.X. Mesquita de Queiroga, R. Lima Dantas, A.G. Barbosa de LimaWilton Pereira Silva. (2020) Drying of Oblate Spheroidal Solids via Model Based on the Non-Equilibrium Thermodynamics. Diffusion Foundations 25, pages 83-98.
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J.C.S. MeloAntônio Gilson Barbosa de LimaWilton Pereira SilvaW.M.P. Barbosa de Lima. (2015) Heat and Mass Transfer during Drying of Lentil Based on the Non-Equilibrium Thermodynamics: A Numerical Study. Defect and Diffusion Forum 365, pages 285-290.
Crossref
A. G. Barbosa de Lima, J. M. P. Q. Delgado, V. A. B. de Oliveira, J. C. S. de Melo & C. Joaquina e Silva. 2014. Transport Phenomena and Drying of Solids and Particulate Materials. Transport Phenomena and Drying of Solids and Particulate Materials 1 23 .
A. G. B. de Lima, S. R. Farias Neto & W. P. Silva. 2012. Heat and Mass Transfer in Porous Media. Heat and Mass Transfer in Porous Media 161 185 .

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