336
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Numerical Simulation on Superheated Steam Fluidized Bed Drying: I. Model Construction

, , , &
Pages 1325-1331 | Published online: 11 Jul 2011

REFERENCES

  • Shibata , H. ; Mujumdar , A.S. Steam drying technologies: Japanese R&D . Drying Technology 1994 , 12 ( 6 ), 1485 – 1524 .
  • Deventer , H.C. ; Heijmans , R.M.H. Drying with superheated steam . Drying Technology 2001 , 19 ( 8 ), 2033 – 2045 .
  • Taechapairoj , C. ; Prachayawarakorn , S. ; Soponronnarit , S. Modelling of parboiled rice in superheated-steam fluidized bed . Journal of Food Engineering 2006 , 76 ( 3 ), 411 – 419 .
  • Heinrich , S. ; Kruger , G. ; Morl , L. Modelling of the batch treatment of wet granular solids with superheated steam in fluidized beds . Chemical Engineering and Processing: Process Intensification 1999 , 38 ( 2 ), 131 – 142 .
  • Chen , Z. ; Wu , W. ; Agrawal , P.K. Steam-drying of coal. Part 1. Modeling of the behavior of a single Particle . Fuel 2000 , 79 ( 8 ), 961 – 973 .
  • Chen , Z. ; Agarwal , P.K. ; Agnew , J.B. Steam-drying of coal. Part 2. Modeling of the operation of a fluidized bed drying unit . Fuel 2001 , 80 ( 2 ), 209 – 223 .
  • Tatemoto , Y. ; Yanoa , S. ; Mawatarib , Y. ; Nodaa , K. ; Komatsuc , N. Drying characteristics of porous material immersed in a bed of glass beads fluidized by superheated steam under reduced pressure . Chemical Engineering Science 2007 , 62 ( 1–2 ), 471 – 480 .
  • Tatemoto , Y. ; Yano , S. ; Takeshita , T. ; Noda , K. ; Komatsu , N. Effect of fluidizing particle on drying characteristics of porous materials in superheated steam fluidized bed under reduced pressure . Drying Technology 2008 , 26 ( 2 ), 168 – 175 .
  • Suvarnakuta , P. ; Devahastin , S. ; Mujumdar , A.S. A mathematical model for low-pressure superheated steam drying of a biomaterial . Chemical Engineering and Processing: Process Intensification 2007 , 46 ( 7 ), 675 – 683 .
  • Kittiworrawatt , S. ; Devahastin , S. Improvement of a mathematical model for low-pressure superheated steam drying of a biomaterial . Chemical Engineering Science 2009 , 64 ( 11 ), 2644 – 2650 .
  • Soponronnarit , S. ; Prachayawarakorn , S. ; Rordprapat , W. ; Nathakaranakule , A. ; Tia , W. A superheated-steam fluidized-bed dryer for parboiled rice: Testing of a pilot-scale and mathematical model development . Drying Technology 2006 , 24 ( 11 ), 1457 – 1467 .
  • Erriguible , A. ; Bernada , P. ; Couture , F. ; Roques , M. Simulation of superheated steam drying from coupling model . Drying Technology 2006 , 24 ( 8 ), 941 – 951 .
  • Namsanguan , Y. ; Tichangtong , S. ; Tia , W. ; Soponronnarit , S. ; Devahastin , S. Simulation of a mixed air and superheated steam drying system . Drying Technology 2005 , 23 ( 1–2 ), 225 – 248 .
  • Wu , Z.H. ; Mujumdar , A.S. Simulation of the hydrodynamics and drying in a spouted bed dryer . Drying Technology 2007 , 25 ( 1 ), 59 – 74 .
  • Ding , J. ; Gidaspow , D. A bubbling fluidization model using kinetic theory of granular flow . AIChE Journal 1990 , 36 ( 4 ), 523 – 538 .
  • Du , W. ; Bao , X.J. ; Xu , J. ; Wei , W.S. Computational fluid dynamics (CFD) modeling of spouted bed: Assessment of drag coefficient correlations . Chemical Engineering Science 2006 , 61 ( 5 ), 1401 – 1420 .
  • Neri , A. ; Gidaspow , D. Riser hydrodynamics: simulation using kinetic theory . AIChE Journal 2000 , 46 ( 1 ), 52 – 67 .
  • Lun , C.K.K. ; Savage , S.B. ; Jeffery , D.J. ; Chepurniy , N. Kinetic theories for granular flow: Inelastic particles in Couette flow and slightly inelastic particles in general flow field . Journal of Fluid Mechanics 1984 , 140 , 223 – 256 .
  • Benyahia , S. ; Arastoopour , H. ; Knowlton , T.M. ; Massah , H. Simulation of particles and gas flow behavior in the riser section of a circulating fluidized bed using the kinetic theory approach for the particulate phase . Powder Technology 2000 , 112 ( 1–2 ), 24 – 33 .
  • Gómez , J.E. ; Melo , D.L. ; Bórquez , R.M. ; Canales , E.R. Computational study of impingement jet drying of seeds using superheated steam based on kinetic theory of granular flow . Drying Technology 2009 , 27 ( 11 ), 1171 – 1182 .
  • Ogawa , S. ; Umemura , A. ; Oshima , N. On the equations of fully fluidized granular materials . Journal of Applied Mathematics and Physics 1980 , 31 ( 4 ), 483 – 493 .
  • Nienwland , J.J. ; Veenendaal , M.L. ; Kuipers , J.A.M. ; Swaaij van , W.P.M. Bubble formation at a single orifice in gas fluidized beds . Chemical Engineering Science 1996 , 51 ( 17 ), 4087 – 4102 .
  • Zhou , L.X. Theory and Numerical Modeling of Turbulent Gas–Particle Flows and Combustion ; Science Publishing Co : Beijing , 1994 .
  • Gidaspow , D. ; Bezburuah , R. ; Ding , J. Hydrodynamics of circulating fluidized beds, kinetic theory approach. In Fluidization VII, Proceedings of the 7th Engineering Foundation Conference on Fluidization, Brisbane, Australia, May 3–8, 1992; pp. 75–82.
  • Schaeffer , D.G. Instability in the evolution equations describing incompressible granular flow . Journal of Differential Equations 1987 , 66 ( 1 ), 19 – 50 .
  • Hinze , J.O. Turbulence ; McGraw-Hill Publishing Co : New York , 1975 .
  • Tao , W.Q. Numerical Heat Transfer, , 2nd Ed ; Xi'an Jiaotong University Press : Xi'an , 2001 .
  • Devahastin , S. ; Mujumdar , A.S. Evaluation of some transport and thermodynamic properties of superheated steam: Effects of steam temperature and pressure . Drying Technology 2000 , 18 ( 4–5 ), 1055 – 1071 .
  • Schmidt , E. Properties of Water and Steam in SI-Units, , 4th Ed ; Springer-Verlag : Berlin , 1981 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.