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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 63, 2013 - Issue 12
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Original Articles

Adaptive-Network-Based Fuzzy Inference System Analysis to Predict the Temperature and Flow Fields in a Lid-Driven Cavity

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Pages 906-920 | Received 09 Oct 2012, Accepted 17 Nov 2012, Published online: 28 Apr 2013

REFERENCES

  • P. O. Iwanik and W. K.S. Chiu , Temperature Distribution of an Optical Fiber Traversing through a Chemical Vapor Deposition Reactor , Numer. Heat Transfer A , vol. 43 , pp. 221 – 237 , 2003 .
  • O. Iuliana and D. Gerhard , Dynamics and Bifurcations in the Weak Electrolyte Model for Electroconvection of Nematic Liquid Crystals: A Ginzburg–Landau Approach , Eur. J. Mech. B-Fluids , vol. 27 , pp. 726 – 749 , 2008 .
  • L. A. Florio and A. Harnoy , Combination Technique for Improving Natural Convection Cooling in Electronics , Int. J. Therm. Sci. , vol. 46 , pp. 76 – 92 , 2007 .
  • D. V. Davis , Natural Convection of Air in a Square Cavity; A Benchmark Solution , Int. J. Num. Meth. Fluids , vol. 3 , pp. 249 – 264 , 1983 .
  • G. W. Yan , Y. S. Chen , and S. X. Hu , Simple Lattice Boltzmann Model for Simulating Flows with Shock Wave , Phys. Rev. E , vol. 59 , pp. 454 – 459 , 1999 .
  • S. P. Dawson , S. Chen , and G. D. Doolen , Lattice Boltzmann Computations for Reaction-Diffusion Equations , J. Chem. Phys. , vol. 98 , pp. 1514 – 1523 , 1993 .
  • H. Sajjadi , M. Gorji , G. H. R. Kefayati , and A. D. Ganji , Lattice Boltzmann Simulation of Turbulent Natural Convection in Tall Enclosures using Cu/water Nanofluid , Numer. Heat Transfer A , vol. 62 , pp. 512 – 530 , 2012 .
  • L. K. Saha , M. A. Hossain , and R. S. R. Gorla , Effect of Hall Current on the MHD Laminar Natural Convection Flow from a Vertical Permeable Flat Plate with Uniform Surface Temperature, Int. J. Therm. Sci. , vol. 46, pp. 790–801, 2007.
  • Y. Y. Yan , H. B. Zhang , and J. B. Hull , Numerical Modeling of Electrohydrodynamic (EHD) Effect on Natural Convection in an Enclosure , Numer. Heat Transfer A , vol. 46 , pp. 453 – 471 , 2004 .
  • R. R. Prasanna , S. P. Vanka , and K. C. Sahu , Multiphase Lattice Boltzmann Simulations of Buoyancy-Induced Flow of Two Immiscible Fluids with Different Viscosities , Eur. J. Mech. B-Fluids , vol. 34 , pp. 105 – 114 , 2012 .
  • Y. T. Yang and F. H. Lai , Numerical Study of Flow and Heat Transfer Characteristics of Alumina-Water Nanofluids in a Microchannel using the Lattice Boltzmann Method , Int. Comm. Heat Mass Transfer , vol. 38 , pp. 607 – 614 , 2011 .
  • M. A. Mussa , S. Abdullah , C. S. Nor Azwadi , and N. Muhamad , Simulation of Natural Convection Heat Transfer in an Enclosure by the Lattice-Boltzmann Method , Comput. Fluids , vol. 44 , pp. 162 – 168 , 2011 .
  • A. Mezrhab , A. M. Mohammed , J. Mohammed , N. Hasan , and B. M'hamed , Double MRT Thermal Lattice Boltzmann Method for Simulating Convective Flows , Phys. Lett. A , vol. 374 , pp. 3499 – 3507 , 2010 .
  • M. Jourabian , M. Farhadi , K. Sedighi , A. A. R. Darzi , and Y. Vazifeshenas , Melting of NEPCM within a Cylindrical Tube: Numerical Study using the Lattice Boltzmann Method , Numer. Heat Transfer A , vol. 61 , pp. 929 – 948 , 2012 .
  • X. Shan , Simulation of Rayleigh-Bénard Convection using a Lattice Boltzmann Method , Phys. Rev. E , vol. 55 , pp. 2780 – 2788 , 1997 .
  • G. McNamara and B. Alder , Analysis of the Lattice Boltzmann Treatment of Hydrodynamics , Physica A , vol. 194 , pp. 218 – 228 , 1993 .
  • X. He , S. Chen , and G. D. Doolen , A Novel Thermal Model for the Lattice Boltzmann Method in Incompressible Limit , J. Comput. Phys. , vol. 146 , pp. 282 – 300 , 1998 .
  • Y. Gan , A. Xu , G. Zhang , X. Yu , and Y. Li , Two-Dimensional Lattice Boltzmann Model for Compressible Flows with High Mach Number , Physica A , vol. 387 , pp. 1721 – 1732 , 2008 .
  • X. F. Pan , A. Xu , G. Zhang , and S. Jiang , Lattice Boltzmann Approach to High-Speed Compressible Flows , Int. J. Mod. Phys. C , vol. 18 , pp. 1747 – 1764 , 2007 .
  • R. G. M. Van Der Sman , M. H. Ernst , and A. C. Berkenbosch , Lattice Boltzmann Scheme for Cooling of Packed Cut Flowers , Int. J. Heat Mass Transfer , vol. 43 , pp. 577 – 587 , 2000 .
  • S. Succi , G. Bella , and F. Papetti , Lattice Kinetic Theory for Numerical Combustion , J. Sci. Comput. , vol. 12 , pp. 395 – 408 , 1997 .
  • X. Y. He and L. S. Luo , A Priori Derivation of the Lattice Boltzmann Equation , Phys. Rev. E , vol. 55 , pp. R6333 – R6336 , 1997 .
  • X. Y. He and L. S. Luo , Theory of the Lattice Boltzmann Method: From the Boltzmann Equation to the Lattice Boltzmann Equation , Phys. Rev. E , vol. 56 , pp. 6811 – 6817 , 1997 .
  • G. Avila and A. Pacheco-Vega , Fuzzy-C-Means-Based Classification of Thermodynamics—Property Data: A Critical Assessment , Numer. Heat Transfer A , vol. 56 , pp. 880 – 896 , 2009 .
  • S. Guanghui , K. Morita , K. Fukuda , P. Mark , D. Jia , and M. Jiakko , Analysis of the Critical Heat Flux in Round Vertical Tubes under Low Pressure and Flow Oscillation Conditions, Applications of Artificial Neural Network , Nucl. Eng. Des. , vol. 220 , pp. 17 – 35 , 2003 .
  • K. Dincer , S. Tasdemir , S. Baskaya , I. Ucgul , and B. Z. Uysal , Fuzzy Modelling of Performance of Counterflow Ranque-Hilsch Vortex Tubes with Different Geometric Construction , Numer. Heat Transfer B , vol. 54 , pp. 499 – 517 , 2008 .
  • M. A. Mahmoud and A. E. Ben-Nakhi , Neural Networks Analysis of Free Laminar Convection Heat Transfer in a Partitioned Enclosure, Comm. Nonlinear Sci. , vol. 12, pp. 1265–1276, 2007.
  • J. Ryoo , Z. Dragojlovic , and D. A. Kaminski , Control of Convergence in a Computational Fluid Dynamics Simulation using ANFIS , IEEE T. Fuzzy Syst. , vol. 13 , pp. 42 – 47 , 2005 .
  • G. Barrios , R. Rechtman , J. Rojas , and R. Tovar , The Lattice Boltzmann Equation for Natural Convection in a Two-Dimensional Cavity with a Partially Heated Wall , J. Fluid Mech. , vol. 522 , pp. 91 – 100 , 2005 .
  • P. H. Kao and R. J. Yang , Simulating Oscillatory Flows in Rayleigh-Bénard Convection using the Lattice Boltzmann Method , Int. J. Heat Mass Transfer , vol. 50 , pp. 3315 – 3328 , 2007 .
  • W. J. Zhou , H. B. Luan , J. Sun , Y. L. He , and W. Q. Tao , A Molecular Dynamics and Lattice Boltzmann Multiscale Simulation for Dense Fluid Flows , Numer. Heat Transfer B , vol. 61 , pp. 369 – 386 , 2012 .
  • Q. Zou and X. He , On Pressure and Velocity Boundary Conditions for the Lattice Boltzmann BGK Model , Phys. Fluids , vol. 9 , pp. 1591 – 1598 , 1997 .
  • A. A. Mohamad , M. El-Ganaoui , and R. Bennacer , Lattice Boltzmann Simulation of Natural Convection in an Open Ended Cavity , Int. J. Therm. Sci. , vol. 48 , pp. 1870 – 1875 , 2009 .
  • K. Khanafer , K. Vafai , and M. Lightstone , Buoyancy-Driven Heat Transfer Enhancement in a Two-Dimensional Enclosure Utilizing Nanofluids , Int. J. Heat Mass Transfer , vol. 46 , pp. 3639 – 3653 , 2003 .
  • U. Ghia , K. N. Ghia , and C. T. Shin , High-Re Solutions for Incompressible Flow using the Navier-Stokes Equations and a Multigrid Method , J. Comput. Phys. , vol. 48 , pp. 387 – 411 , 1982 .

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