Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 64, 2013 - Issue 3
209
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

High Gradient Temperature Thermo-Buoyant Flow in a Square Cavity with Magnetoconvection Using a Novel Non-Boussinesq Algorithm

, , , &
Pages 255-272 | Received 24 Feb 2012, Accepted 05 Feb 2013, Published online: 16 May 2013

REFERENCES

  • M. Darbandi and G. E. Schneider , Thermobuoyancy Treatment for Electronic Packaging using an Improved Advection Scheme , ASME J. Electron. Packaging , vol. 125 , pp. 244 – 250 , 2003 .
  • K. O. Lim , K. S. Lee , and T. H. Song , Primary and Secondary Instabilities in a Glass-Melting Surface , Numer. Heat Transfer A , vol. 36 , pp. 309 – 325 , 1999 .
  • S. Singh and M. A. R. Sharif , Mixed Convective Cooling of a Rectangular Cavity with Inlet, and Exit Openings on Differentially Heated Side Walls , Numer. Heat Transfer A , vol. 44 , pp. 233 – 253 , 2003 .
  • J. H. Bae , J. M. Hyun , and H. S. Kwak , Buoyant Convection in a Cavity with a Baffle under Time-Periodic Wall Temperature , Numer. Heat Transfer A , vol. 39 , pp. 723 – 736 , 2001 .
  • M. Darbandi , S. F. Hosseinizadeh , M. Saadat , and P. Farzinpour , Effect of Partition Wall on Natural Convection in Enclosures with High Temperature Gradients, The Second International Conference on Thermal Engineering Theory and Applications , pp. 1 – 5 , Al Ain , UAE , January 3–6 , 2006 .
  • M. A. Randriazanamparany , A. Skouta , and M. Daguenet , Numerical Study of the Transition toward Chaos of Two-Dimensional Natural Convection within a Square Cavity , Numer. Heat Transfer A , vol. 48 , pp. 127 – 147 , 2005 .
  • C. Y. Han and S. W. Baek , The Effects of Radiation on Natural Convection in a Rectangular Enclosure Divided by Two Partitions , Numer. Heat Transfer A , vol. 37 , pp. 249 – 270 , 2000 .
  • M. E. Sayed-Ahmad , Numerical Solution of Power Law Fluid and Heat Transfer with a Magnetic Field in a Rectangular Duct , Int. Comm. Heat and Mass Transfer , vol. 33 , pp. 1165 – 1176 , 2006 .
  • J. P. Garandet , T. Alboussiere , and R. Moreau , Buoyancy Driven Convection in a Rectangular Enclosure with a Transverse Magnetic Field , Int. J. Heat Mass Transfer , vol. 35 , pp. 741 – 749 , 1992 .
  • H. S. Takhar and P. C. Ram , Magnetohydrodynamic Free Convection Flow of Water at 4C° through a Porous Wall , Int. Comm. Heat and Mass Transfer , vol. 21 , pp. 371 – 376 , 1994 .
  • N. Rudraiah , R. M. Barron , M. Venkatachalappa , and C. K. Subbaraya , Effect of a Magnetic Field on Free Convection in a Rectangular Enclosure, Int. J. Eng. Sci. , vol. 33, pp. 1075–1084, 1995.
  • P. Kandaswamy , S. M. Sundari , and N. Nithyadevi , Magnetoconvection in an Enclosure with Partially Active Vertical Walls , Int. J. Heat and Mass Transfer , vol. 51 , pp. 1946 – 1954 , 2008 .
  • S. Sivasankaran and C. J. Ho , Effect of Temperature Dependent Properties on MHD Convection of Water Near its Density Maximum in a Square Cavity , Int. J. Thermal Sciences , vol. 47 , pp. 1184 – 1194 , 2008 .
  • M. Pirmohammadi , M. Ghassemi , and G. A. Sheikhzadeh , Effect of a Magnetic Field on Buoyancy-Driven Convection in Differentially Heated Square Cavity , IEEE Trans. on Magnetics , vol. 45 , no. 1 , pp. 407 – 411 , 2009 .
  • D. R. Chenoweth and S. Paolucci , Natural Convection in an Enclosed Vertical Air Layer with Large Horizontal Temperature Differences , J. Fluid Mech. , vol. 169 , pp. 173 – 210 , 1986 .
  • M. Darbandi and G. E. Schnieder , Application of an All-Speed Flow Algorithm to Heat Transfer Problems , Numer. Heat Transfer A , vol. 35 , no. 7 , pp. 695 – 715 , 1999 .
  • M. Darbandi and S. F. Hosseinizadeh , A General Strategy to Include Density Variation in Incompressible Algorithms , J. Thermophysics Heat Transfer , vol. 39 , pp. 372 – 380 , 2003 .
  • H. K. Versteeg and W. Malalasekera , An Introduction to Computational Fluid Dynamics, The Finite Volume Method , pp. 135 – 146 , Longman , Malaysia , 1995 .
  • M. Darbandi and S. F. Hosseinizadeh , Remarks on Numerical Prediction of Wall-Shear-Stress in Entry Flow Problems , Comm. Numer. Meth. Eng. , vol. 20 , pp. 619 – 625 , 2004 .
  • M. Darbandi and S. F. Hosseinizadeh , A Two-Step Modification toward Implementing Compressible Source Terms in Low Compressible Flows , J. Aerospace Sci. Tech. , vol. 2 , pp. 37 – 44 , 2005 .
  • M. Darbandi and S. F. Hosseinizadeh , Numerical Simulation of Thermobuoyant Flow with Large Temperature Variation , J. Thermophys. Heat Transfer , vol. 20 , pp. 285 – 296 , 2006 .
  • M. Darbandi and S. F. Hosseinizadeh , Numerical Study of Natural Convection in Vertical Enclosures using a Novel Non-Boussinesq Algorithm , Numer. Heat Transfer A , vol. 52 , pp. 849 – 873 , 2007 .
  • M. Alipanah , P. Hasannasab , S. F. Hosseinizadeh , and M. Darbandi , Entropy Generation for Compressible Natural Convection with High Gradient Temperature in a Square Cavity , Int. Comm. in Heat and Mass Transfer , vol. 37 , no. 9 , pp. 1388 – 1395 , 2010 .
  • S. F. Hosseinizadeh , M. Darbandi , and M. Heidarnataj , Numerical Study of High Gradient Thermobuoyant Flow in a Tilted Cavity using a Novel Non-Boussinesq Algorithm , Numer. Heat Transfer A , vol. 58 , no. 12 , pp. 984 – 1003 , 2010 .
  • H. R. Ebrahimi-Kebria , M. Darbandi , and S. F. Hosseinizadeh , Numerical Simulation of Low Mach Number Laminar Mixing and Reacting Flows using a Dual-Purpose Pressure-Based Algorithm , Numer. Heat Transfer B. , vol. 59 , no. 6 , pp. 495 – 514 , 2011 .
  • Y. Horibata , Numerical Simulation of a Low-Mach-Number Flow with a Large Temperature Variation , Comput. & Fluids , vol. 21 , pp. 185 – 200 , 1992 .
  • G. de Vahl Davis , Natural Convection of Air in Square Cavity: A Bench Mark Solution , Int. J. Numer. Meth. Fluids , vol. 3 , pp. 249 – 264 , 1983 .

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.