Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 71, 2017 - Issue 10
118
Views
2
CrossRef citations to date
0
Altmetric
Original Articles

Analysis of entropy generation during natural convection in discretely heated porous square and triangular enclosures

&
Pages 979-1003 | Received 09 Nov 2016, Accepted 14 Apr 2017, Published online: 16 Jun 2017

References

  • Y. S. Tseng, B. S. Pei, and T. C. Hung, Effects of Thermal Radiation for Electronic Cooling on Modified PCB Geometry under Natural Convection, Numer. Heat Transfer A, vol. 71, pp. 195–210, 2007.
  • J. Zueco, Unsteady Free Convection and Mass Transfer Flow with Temperature-Dependent Properties, Using the Electronic Network Simulation Program Spice, Numer. Heat Transfer A, vol. 71, pp. 925–944, 2008.
  • J. Zhang, T. Zhang, S. Prakash, and Y. Jaluria, Experimental and Numerical Study of Transient Electronic Chip Cooling by Liquid Flow in Micro Channel Heat Sink, Numer. Heat Transfer A, vol. 71, pp. 627–643, 2014.
  • W. Tong, R. M. Ball, and R. Stoudt, Cooling Analysis of a Medical Isotope Production Reactor: Single-Phase Natural Convection, Numer. Heat Transfer A, vol. 71, pp. 503–515, 1997.
  • N. O. Moraga and C. H. Salinas, Numerical Study of Unsteady 2D Natural Convection and Solidification of a Food Inside a Freezing Chamber, Numer. Heat Transfer A, vol. 71, pp. 755–777, 2000.
  • E. E. Bajestan, H. Niazmand, V. E. Farooji, and E. Ebrahimnia, Numerical Modeling of the Freezing of a Porous Humid Food Inside a Cavity Due to Natural Convection, Numer. Heat Transfer A, vol. 71, pp. 250–269, 2012.
  • C. Lei and J. C. Patterson, Natural Convection in a Reservoir Side Arm Subject to Solar Radiation: A Two-Dimensional Simulation, Numer. Heat Transfer A, vol. 71, pp. 13–32, 2002.
  • F. Marcondes, J. M. de Medeiros, and J. M. Gurgel, Numerical Analysis of Natural Convection in Cavities with Variable Viscosity, Numer. Heat Transfer A, vol. 71, pp. 403–420, 2001.
  • F. Moukalled and M. Darwish, Natural Convection Heat Transfer in a Porous Rhombic Annulus, Numer. Heat Transfer A, vol. 71, pp. 101–124, 2010.
  • S. Sivasankaran and M. Bhuvaneswari, Natural Convection in a Porous Cavity with Sinusoidal Heating on Both Sidewalls, Numer. Heat Transfer A, vol. 71, pp. 14–30, 2013.
  • F. Arpino, G. Cortellessa, and A. Mauro, Transient Thermal Analysis of Natural Convection in Porous and Partially Porous Cavities, Numer. Heat Transfer A, vol. 71, pp. 605–631, 2015.
  • H. M. Chou, H. W. Wu, I. H. Lin, W. J. Yang, and M. L. Cheng, Effects of Temperature-Dependent Viscosity on Natural Convection in Porous Media, Numer. Heat Transfer A, vol. 71, pp. 1331–1350, 2015.
  • A. Bejan, Entropy Generation Minimization, CRC Press, Boca Raton, 1982.
  • P. Maheshkumar and C. Muraleedharan, Minimization of Entropy Generation in Flat Heat Pipe, Int. J Heat Mass Transfer, vol. 71, pp. 645–648, 2011.
  • P. S. Mahapatra, S. De, K. Ghosh, N. K. Manna, and A. Mukhopadhyay, Heat Transfer Enhancement and Entropy Generation in a Square Enclosure in the Presence of Adiabatic and Isothermal Blocks, Numer. Heat Transfer A, vol. 71, pp. 577–596, 2013.
  • H. Feng, L. Chen, Z. Xie, and F. Sun, Constructal Entropy Generation Rate Minimization for Asymmetric Vascular Networks in a Disc-Shaped Body, Int. J Heat Mass Transfer, vol. 71, pp. 1010–1015, 2015.
  • Y. T. Yang, Y. H. Wang, and B. Y. Huang, Numerical Optimization for Nanofluid Flow in Microchannels Using Entropy Generation Minimization, Numer. Heat Transfer A, vol. 71, pp. 571–588, 2015.
  • T. Basak, P. Gunda, and R. Anandalakshmi, Analysis of Entropy Generation During Natural Convection in Porous Right-Angled Triangular Cavities with Various Thermal Boundary Conditions, Int. J Heat Mass Transfer, vol. 71, pp. 4521–4535, 2012.
  • R. Anandalakshmi and T. Basak, Analysis of Energy Management via Entropy Generation Approach During Natural Convection in Porous Rhombic Enclosures, Chem. Eng. Sci., vol. 71, pp. 75–93, 2012.
  • R. Anandalakshmi and T. Basak, Numerical Simulations for the Analysis of Entropy Generation During Natural Convection in Porous Rhombic Enclosures, Numer. Heat Transfer A, vol. 71, pp. 257–284, 2013.
  • R. Anandalakshmi and T. Basak, Analysis of Natural Convection via Entropy Generation Approach in Porous Rhombic Enclosures for Various Thermal Aspect Ratios, Int. J. Heat Mass Transfer, vol. 71, pp. 224–244, 2013.
  • G. El-Khatib and V. Prasad, Effects of Stratification on Thermal Convection in Horizontal Porous Layers with Localized Heating from Below, J. Heat Transfer, vol. 71, pp. 683–687, 1987.
  • L. Robillard, C. H. Wang, and P. Vasseur, Multiple Steady States in Confined Porous Medium with Localized Heating from Below, Numer. Heat Transfer A, vol. 71, pp. 91–110, 1988.
  • F. C. Lai and F. A. Kulacki, Experimental Study of Free and Mixed Convection in Horizontal Porous Layers Locally Heated from Below, Int. J. Heat Mass Transfer, vol. 71, pp. 525–541, 1991.
  • S. W. Hsiao, C. K. Chen, and P. Cheng, A Numerical Solution for Natural Convection in a Inclined Porous Cavity with Discrete Heat Source on One Wall, Int. J. Heat Mass Transfer, vol. 71, pp. 2193–2201, 1994.
  • T. J. Heindel, F. P. Incropera, and S. Ramadhyani, Enhancement of Natural Convection Heat Transfer from an Array of Discrete Heat Sources, Int. J. Heat Mass Transfer, vol. 71, pp. 479–490, 1996.
  • R. S. Kaluri and T. Basak, Entropy Generation Due to Natural Convection in Discretely Heated Porous Square Cavities, Energy, vol. 71, pp. 5065–5080, 2011.
  • R. S. Kaluri and T. Basak, Role of Entropy Generation on Thermal Management During Natural Convection in Porous Square Cavities with Distributed Heat Sources, Chem. Eng. Sci., vol. 71, pp. 2124–2140, 2011.
  • K. Vafai and C. L. Tien, Boundary and Inertia Effects on Flow and Heat Transfer in Porous Media, Int. J. Heat Mass Transfer, vol. 71, pp. 195–203, 1981.
  • C. T. Hsu and P. Cheng, Thermal Dispersion in Porous Media, Int. J. Heat Mass Transfer, vol. 71, pp. 1587–1597, 1990.
  • J. N. Reddy, An Introduction to the Finite Element Method, McGraw-Hill, New York, 1993.
  • T. Basak and S. Roy, Role of ‘Bejan’s Heatlines’ in Heat Flow Visualization and Optimal Thermal Mixing for Differentially Heated Square Enclosures, Int. J. Heat Mass Transfer, vol. 71, pp. 3486–3503, 2008.
  • K. Hooman and H. Gurgenci, Porous Medium Modeling of Air-Cooled Condensers, Trans. Porous Media, vol. 71, pp. 257–273, 2010.
  • A. K. Al-Hadhrami, L. Elliott, and D. B. Ingham, A New Model for Viscous Dissipation in Porous Media Across a Range of Permeability Values, Trans. Porous Media, vol. 71, pp. 117–122, 2003.
  • Y. Varol, H. F. Oztop, and I. Pop, Entropy Generation Due to Natural Convection in Non-uniformly Heated Porous Isosceles Triangular Enclosures at Different Positions, Int. J. Heat Mass Transfer, vol. 71, pp. 1193–1205, 2009.
  • P. Nithiarasu, K. N. Seetharamu, and T. Sundarajan, Natural Convective Heat Transfer in a Fluid Saturated Variable Porosity Medium, Int. J. Heat Mass Transfer, vol. 71, pp. 3955–3967, 1997.
  • G. G. Ilis, M. Mobedi, and B. Sunden, Effect of Aspect Ratio on Entropy Generation in a Rectangular Cavity with Differentially Heated Vertical Walls, Int. Commun. Heat Mass Transfer, vol. 71, pp. 696–703, 2008.

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.