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Drying Technology
An International Journal
Volume 18, 2000 - Issue 1-2
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Original Articles

THEORETICAL ANALYSIS OF THE DIFFUSION PROCESS INSIDE PROLATE SPHEROIDAL SOLIDS

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Pages 21-48 | Published online: 16 Jun 2010

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Read on this site (6)

LovelynN. Onuoha, NdubisiA. Aviara, ToyinA. Abdulrahim & AhmedT. Suleiman. (2013) Influence of Cultivar on the Predictive Performance of a Moisture Transport Model Developed for Parboiled Paddy Drying. Drying Technology 31:5, pages 494-506.
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Vital Araújo Barbosa de Oliveira & Antonio Gilson Barbosa de Lima. (2009) Drying of Wheat Based on the Non-Equilibrium Thermodynamics: A Numerical Study. Drying Technology 27:2, pages 306-313.
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João Evangelista Franco do Carmo & Antonio Gilson Barbosa de Lima. (2005) Drying of Lentil Including Shrinkage: A Numerical Simulation. Drying Technology 23:9-11, pages 1977-1992.
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Zhanyong Li, Jingsheng Ye, Noriyuki Kobayashi & Masanobu Hasatani. (2004) Modeling of Diffusion in Ellipsoidal Solids: A Simplified Approach. Drying Technology 22:10, pages 2219-2230.
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Zhanyong Li, Noriyuki Kobayashi & Masanobu Hasatani. (2004) Modeling of Diffusion in Ellipsoidal Solids: A Comparative Study. Drying Technology 22:4, pages 649-675.
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A. G. B. de Lima & S. A. Nebra. (2001) THEORETICAL STUDY OF INTERMITTENT DRYING (TEMPERING) IN PROLATE SPHEROIDAL BODIES. Drying Technology 19:8, pages 1569-1589.
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Articles from other publishers (14)

Emmanuel Purlis & Sandro M. Goñi. (2021) A simple method to predict transient diffusion processes in ellipsoids. Biosystems Engineering 205, pages 27-47.
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Laurent Simon & Juan Ospina. (2019) Controlled drug release from a spheroidal matrix. Physica A: Statistical Mechanics and its Applications 518, pages 30-37.
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A. G. Barbosa de Lima, J. M. P. Q. Delgado, S. R. F. Neto & C. M. R. Franco. 2016. Drying and Energy Technologies. Drying and Energy Technologies 19 41 .
A. G. Barbosa de Lima, J. M. P. Q. Delgado, I. B. Santos, J. P. Silva Santos, E. S. Barbosa & C. Joaquina e Silva. 2014. Transport Phenomena and Drying of Solids and Particulate Materials. Transport Phenomena and Drying of Solids and Particulate Materials 25 43 .
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 .
Analia B. Garcia Loredo, Sandra N. Guerrero, Paula L. Gomez & Stella M. Alzamora. (2011) Relationships between rheological properties, texture and structure of apple (Granny Smith var.) affected by blanching and/or osmotic dehydration. Food and Bioprocess Technology 6:2, pages 475-488.
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V.S.O. Farias, Wilton Pereira SilvaC.M.D.P. Silva e SilvaAntônio Gilson Barbosa de Lima. (2012) Three-Dimensional Diffusion in Arbitrary Domain Using Generalized Coordinates for the Boundary Condition of the First Kind: Application in Drying. Defect and Diffusion Forum 326-328, pages 120-125.
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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 .
O. D. Momoh, M. N. O. Sadiku, C. M. Akujuobi & S. M. Musa. (2010) A Fixed Random Walk Method of potential computation in a conducting spherical shell. A Fixed Random Walk Method of potential computation in a conducting spherical shell.
Omonowo D. Momoh, Matthew N. O. Sadiku & Cajetan M. Akujuobi. (2009) Analytical and numerical computation of prolate spheroidal shell capacitance. Microwave and Optical Technology Letters 51:10, pages 2361-2365.
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Carlos Alberto Márquez, Antonio De Michelis & Sergio Adrián Giner. (2006) Drying kinetics of rose hip fruits ( Rosa eglanteria L.). Journal of Food Engineering 77:3, pages 566-574.
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E Kavak Akpinar & I Dincer. (2005) Application of moisture transfer models to solids drying. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 219:3, pages 235-244.
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E. Kavak Akpinar & I. Dincer. (2005) Moisture transfer models for slabs drying. International Communications in Heat and Mass Transfer 32:1-2, pages 80-93.
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A.G.B. De Lima, M.R. Queiroz & S.A. Nebra. (2008) Heat and Mass Transfer Model Including Shrinkage Applied to Ellipsoidal Products: Case Study for Drying of Bananas. Developments in Chemical Engineering and Mineral Processing 10:3-4, pages 281-304.
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