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Drying Technology
An International Journal
Volume 31, 2013 - Issue 12
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Original Articles

Numerical Simulation of Drying of a Deformable Anisotropic Porous Medium Using the Lattice Boltzmann Method

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Pages 1400-1414 | Published online: 26 Aug 2013

REFERENCES

  • Perré , P. ; May , B.K. A numerical drying model that accounts for the coupling between transfers and solid mechanics: Case of highly deformable products . Drying Technology 2001 , 19 ( 8 ), 1629 – 1643 .
  • Mihoubi , D. ; Zagrouba , F. ; Vaxelaire , J. ; Bellagi , A. ; Roques , M. Transfer phenomena during the drying of a shrinkable product: Modeling and simulation . Drying Technology 2004 , 22 ( 1–2 ), 91 – 109 .
  • Katekawa , M.E. ; Silva , M.A. A review of drying models including shrinkage effects . Drying Technology 2006 , 24 ( 1 ), 5 – 20 .
  • Gustavo , E.C.S. ; Bruneau , D. ; Jomaa , W. Two-phase shrinking porous media drying: A modeling approach including liquid pressure gradients effects . Drying Technology 2007 , 25 ( 12 ), 1927 – 1934 .
  • Chemkhi , S. ; Jomaa , W. ; Zagrouba , F. Application of a coupled thermo-hydro-mechanical model to simulate the drying of nonsaturated porous media . Drying Technology 2009 , 27 ( 7 ), 842 – 850 .
  • Boulos , M. ; Bruneau , D. ; Jomaa , W. On the influence of permeability and Young's modulus on the dehydration of a strongly shrinkable two-phase porous medium: A model of sensibility analysis and the development of a contact mechanics measurement setup . Drying Technology 2012 , 30 ( 6 ), 664 – 678 .
  • Mujumdar , A.S. Handbook of Industrial Drying ; Marcel Dekker Inc. : New York , 1987 .
  • Nadeau , J.P. ; Puiggali , J.R. De l'analyse d'un produit à la conception d'un séchoir . Entropie 1989 , 149 , 41 – 47 .
  • Aregba , W. ; Jomaa , W. ; Puiggali , J.R. Une approche du séchage de matériaux fortement déformables . Review Physics Applied 1990 , 25 ( 11 ), 1161 – 1175 .
  • Yang , H. ; Sakai , N. ; Watanabe , M. Drying model with non-isotropic shrinkage deformation undergoing simultaneous heat and mass transfer . Drying Technology 2001 , 19 ( 7 ), 1441 – 1460 .
  • Kowalski , S.J. ; Mielniczuk , B. Drying-induced stresses in macaroni dough . Drying Technology 2006 , 24 ( 9 ), 1093 – 1099 .
  • Mihoubi , D. ; Bellagi , A. Drying-induced stresses during convective and combined microwave and convective drying of saturated porous media . Drying Technology 2009 , 27 ( 7–8 ), 851 – 856 .
  • Khoshghalb , A. ; Khalili , N. A stable meshfree method for fully coupled flow-deformation analysis of saturated porous media . Computers and Geotechnics 2010 , 37 , 789 – 795 .
  • Kowalski , S.J. ; Musielak , G. ; Rybicki , A. ; Śli , T. Stresses and strains in elastic, viscoelastic, and plastic materials during drying . Drying Technology 2012 , 30 ( 11–12 ), 1176 – 1189 .
  • Stakic , M. ; Stefanovic , P. ; Cvetinovic , D. ; Škobalj , P. Convective drying of particulate solids–packed vs. fluid bed operation . International Journal of Heat and Mass Transfer 2013 , 59 , 66 – 74 .
  • Mondaca , R.A.L. ; Zambra , C.E. ; Gálvez , A.V. ; Moraga , N.O. Coupled 3D heat and mass transfer model for numerical analysis of drying process in papaya slices . Journal of Food Engineering 2013 , 116 , 109 – 117 .
  • Whitaker , S. Simultaneous heat, mass, and momentum transfer in porous media: A theory of drying . Advances in Heat Transfer 1977 , 13 , 119 – 203 .
  • Barchelor , G.K. An Introduction to Fluid Dynamics ; Cambridge University Press : Cambridge , UK , 1969 .
  • Wen , P.H. ; Hon , Y.C. ; Wang , W. Dynamic responses of shear flows over a deformable porous surface layer in a cylindrical tube . Applied Mathematical Modeling 2009 , 33 , 423 – 436 .
  • Pourcel , F. ; Jomaa , W. ; Puiggali , J.R. ; Rouleau , L. Criterion for crack initiation during drying: Alumina porous ceramic strength improvement . Powder Technology 2007 , 172 , 120 – 127 .
  • Mobedi , M. ; Cekmer , O. ; Pop , I. Forced convection heat transfer inside an anisotropic porous channel with oblique principal axes: Effect of viscous dissipation . International Journal of Thermal Science 2010 , 49 , 1984 – 1993 .
  • Belova , I.V. ; Veyhl , C. ; Fiedler , T. ; Murch , G.E. Analysis of anisotropic behavior of thermal conductivity in cellular metals . Scripta Materialia 2011 , 65 , 436 – 439 .
  • Guo , Z. ; Zhoa , T.S. Lattice Boltzmann model for incompressible flows through porous media . Physical Review E 2002 , 66 ( 3 ), 036304–1 – 036304–9 .
  • Guo , Z. ; Zhoa , T.S. A Lattice Boltzmann model for convection heat transfer in porous media . Numerical Heat Transfer Part B 2005 , 47 , 157 – 177 .
  • Cai , J. ; Huai , X. Study on fluid–solid coupling heat transfer in fractal porous medium by Lattice Boltzmann method . Applied Thermal Engineering 2010 , 30 , 715 – 723 .
  • Li , Q. ; Zhao , K. ; Xuan , Y.M. Simulation of flow and heat transfer with evaporation in a porous wick of a CPL evaporator on pore scale by Lattice Boltzmann method. International Journal of Heat and Mass Transfer 2011, 54, 2890–2901.
  • Zhao , K. ; Xuan , Y. ; Li , Q. Investigation on the mechanism of convective heat and mass transfer with double diffusive effect inside a complex porous medium using Lattice Boltzmann method . Chinese Science Bulletin 2011 , 55 ( 26 ), 3051 – 3059 .
  • Bhatnagar , P.L. ; Gross , E.P. ; Krook , M. A model for collision process in gases.I. Small amplitude process in charged and neutral one-component systems . Physical Review 1954 , 94 ( 3 ), 511 – 525 .
  • Mohamed , A.A. Lattice Boltzmann Method Fundamentals and Engineering Applications with Computer Codes ; Springer-Verlag : London , 2011 .
  • Mussa , M.A. ; Abdullah , S. ; Nor Azwadi , C.S. ; Muhamad , N. Simulation of natural convection heat transfer in an enclosure by the Lattice-Boltzmann method . Computers & Fluids 2011 , 44 , 162 – 168 .
  • Han , B. ; Yu , J. ; Meng , H. Lattice Boltzmann simulations of liquid droplets development and interaction in a gas channel of a proton exchange membrane fuel cell . Journal of Power Sources 2012 , 202 , 175 – 183 .
  • Mohamad , A.A. ; Kuzmin , A. Critical evaluation of force term in Lattice Boltzmann method, natural convection problem . International Journal of Heat and Mass Transfer 2010 , 53 , 990 – 996 .
  • Taehun , L. ; Ching-Long , L. ; Lea-Der , C. A Lattice Boltzmann algorithm for calculation of the laminar jet diffusion flame . Journal of Computational Physics 2006 , 215 , 133 – 152 .
  • Lallemand , P. ; Luo , L.S. Lattice Boltzmann method for moving boundaries . Journal of Computational Physics 2003 , 184 ( 2 ), 406 – 421 .
  • D'Orazio , A. ; Corcione , M. ; Celata , G.P. Application to natural convection enclosed flows of a Lattice Boltzmann BGK model coupled with a general purpose thermal boundary condition . International Journal of Thermal Sciences 2004 , 43 , 575 – 586 .
  • Chemkhi , S. ; Zagrouba , F. Development of a Darcy-flow model applied to simulate the drying of shrinking media . Brazilian Journal of Chemical Engineering 2008 , 25 ( 3 ), 503 – 514 .
  • Chemki , S. Drying of a deformable unsaturated medium: Modeling of hydro-mechanical coupling. Ph.D. thesis, University of Bordeaux 1, Bordeaux, France, 2008.

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