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Drying Technology
An International Journal
Volume 13, 1995 - Issue 3
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Original Articles

Two Dimensional Heat and Mass Transfer During Convective Drying of Porous Media

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Pages 661-694 | Published online: 10 May 2007

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Read on this site (10)

Milad Farzad & Jamal Yagoobi. (2021) Drying of moist cookie doughs with innovative slot jet reattachment nozzle. Drying Technology 39:2, pages 268-278.
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Md. Imran H. Khan, M. U. H. Joardder, Chandan Kumar & M. A. Karim. (2018) Multiphase porous media modelling: A novel approach to predicting food processing performance. Critical Reviews in Food Science and Nutrition 58:4, pages 528-546.
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P. Rattanadecho & N. Makul. (2016) Microwave-Assisted Drying: A Review of the State-of-the-Art. Drying Technology 34:1, pages 1-38.
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Robert Adamski & Zdzisław Pakowski. (2013) Identification of Effective Diffusivities in Anisotropic Material of Pine Wood during Drying with Superheated Steam. Drying Technology 31:3, pages 264-268.
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Mustapha Najjari & Sassi Ben Nasrallah. (2009) Heat Transfer Between a Porous Layer and a Forced Flow: Influence of Layer Thickness. Drying Technology 27:3, pages 336-343.
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P. Rattanadecho, W. Pakdee & J. Stakulcharoen. (2007) Analysis of Multiphase Flow and Heat Transfer: Pressure Buildup in an Unsaturated Porous Slab Exposed to Hot Gas. Drying Technology 26:1, pages 39-53.
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Aleksandar Dj. Dedic, Arun S. Mujumdar & Dimitrije K. Voronjec. (2003) A Three Dimensional Model for Heat and Mass Transfer in Convective Wood Drying. Drying Technology 21:1, pages 1-15.
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Articles from other publishers (11)

Kamel Ben Dhib, Karim Garouachi, Nabil Kechaou & Soufien Azzouz. 2024. Advances in Thermal Science and Energy. Advances in Thermal Science and Energy 489 498 .
Seyed Majid Sajadiye & Ayad Saberian. (2021) The effect of weather on temperature variation inside a solar dryer in Ahvaz‐Iran using computational fluid dynamics method . Journal of Food Process Engineering 44:12.
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Hong Thai Vu & Evangelos Tsotsas. (2019) A Framework and Numerical Solution of the Drying Process in Porous Media by Using a Continuous Model. International Journal of Chemical Engineering 2019, pages 1-16.
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Thijs Defraeye, Bert Blocken, Dominique Derome, Bart Nicolai & Jan Carmeliet. (2012) Convective heat and mass transfer modelling at air–porous material interfaces: Overview of existing methods and relevance. Chemical Engineering Science 74, pages 49-58.
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Séverine Thérèse F.C. Mortier, Thomas De Beer, Krist V. Gernaey, Jurgen Vercruysse, Margot Fonteyne, Jean Paul Remon, Chris Vervaet & Ingmar Nopens. (2012) Mechanistic modelling of the drying behaviour of single pharmaceutical granules. European Journal of Pharmaceutics and Biopharmaceutics 80:3, pages 682-689.
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Séverine Thérèse F.C. Mortier, Thomas De Beer, Krist V. Gernaey, Jean Paul Remon, Chris Vervaet & Ingmar Nopens. (2011) Mechanistic modelling of fluidized bed drying processes of wet porous granules: A review. European Journal of Pharmaceutics and Biopharmaceutics 79:2, pages 205-225.
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Ratthasak Prommas. (2011) Theoretical and experimental study of heat and mass transfer mechanism during convective drying of multi-layered porous packed bed. International Communications in Heat and Mass Transfer 38:7, pages 900-905.
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A.K. Datta. (2007) Porous media approaches to studying simultaneous heat and mass transfer in food processes. II: Property data and representative results. Journal of Food Engineering 80:1, pages 96-110.
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M.V. De Bonis & G. Ruocco. (2007) Modelling local heat and mass transfer in food slabs due to air jet impingement. Journal of Food Engineering 78:1, pages 230-237.
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Ian W. Turner & Patrick Perré. (2004) Vacuum drying of wood with radiative heating: II. Comparison between theory and experiment. AIChE Journal 50:1, pages 108-118.
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Patrick Perré & Ian W. Turner. (1999) A 3-D version of TransPore: a comprehensive heat and mass transfer computational model for simulating the drying of porous media. International Journal of Heat and Mass Transfer 42:24, pages 4501-4521.
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