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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 18, 1990 - Issue 3
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Original Articles

NATURAL CONVECTION IN VERTICAL CAVITIES WITH PARTIALLY FILLED HEAT-GENERATING POROUS MEDIA

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Pages 371-386 | Received 13 Jul 1989, Accepted 01 Mar 1990, Published online: 27 Apr 2007

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Tien-Mo Shih & MichaelM. Ohadi. (1993) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1990-1991). Numerical Heat Transfer, Part A: Applications 23:2, pages 129-169.
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Articles from other publishers (16)

Aranyak Chakravarty, Koushik Ghosh, Swarnendu Sen & Achintya Mukhopadhyay. (2022) Impact of liquid coolant subcooling on boiling heat transfer and dryout in heat-generating porous media. Thermal Science and Engineering Progress 30, pages 101251.
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Beatriz Machado dos Santos, Ludimila Silva Salles de Sá & Jian Su. (2021) Natural convection in a horizontal annular sector containing heat-generating porous medium. International Journal of Numerical Methods for Heat & Fluid Flow 32:1, pages 387-403.
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J.C. Umavathi & O. Anwar Beg. (2020) Convective fluid flow and heat transfer in a vertical rectangular duct containing a horizontal porous medium and fluid layer. International Journal of Numerical Methods for Heat & Fluid Flow 31:4, pages 1320-1344.
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H. Saleh, I. Hashim, E. Jamesahar & M. Ghalambaz. (2020) Effects of flexible fin on natural convection in enclosure partially-filled with porous medium☆. Alexandria Engineering Journal 59:5, pages 3515-3529.
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Aranyak Chakravarty, Priyankan Datta, Koushik Ghosh, Swarnendu Sen & Achintya Mukhopadhyay. (2020) Characteristics of thermal energy removal from heat-generating porous media considering liquid-vapour phase change. International Journal of Heat and Mass Transfer 148, pages 119073.
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M. Muthtamilselvan, S. Sureshkumar & Deog Hee Doh. (2017) Coupled Free and Forced Convection Heat Transfer in a Porous Enclosure Saturated by Nanofluid with Irregular Temperature Distributions on Sidewalls. International Journal of Chemical Reactor Engineering 15:6.
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A. Filiz Baytaş & A. Cihat Baytaş. (2017) Thermal Non-equilibrium Natural Convection in a Square Enclosure with Heat-Generating Porous Layer on Inner Walls. Transport in Porous Media 120:1, pages 167-182.
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Aranyak Chakravarty, Priyankan Datta, Koushik Ghosh, Swarnendu Sen & Achintya Mukhopadhyay. (2016) Thermal Non-equilibrium Heat Transfer and Entropy Generation due to Natural Convection in a Cylindrical Enclosure with a Truncated Conical, Heat-Generating Porous Bed. Transport in Porous Media 116:1, pages 353-377.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 363 437 .
Aranyak Chakravarty, Priyankan Datta, Koushik Ghosh, Swarnendu Sen & Achintya Mukhopadhyay. (2016) Numerical analysis of a heat-generating, truncated conical porous bed in a fluid-filled enclosure. Energy 106, pages 646-661.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2013. Convection in Porous Media. Convection in Porous Media 331 396 .
John Ibrahim & Samuel Paolucci. (2009) The modeling of realistic chemical vapor infiltration/deposition reactors. International Journal for Numerical Methods in Fluids 64:5, pages 473-516.
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M. Muthtamilselvan, Manab Kumar Das & P. Kandaswamy. (2009) Convection in a Lid-Driven Heat-Generating Porous Cavity with Alternative Thermal Boundary Conditions. Transport in Porous Media 82:2, pages 337-346.
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Yi-Hsiang Huang & Suresh K. Aggarwal. (1995) Effect of Wall Conduction on Natural Convection in an Enclosure With a Centered Heat Source. Journal of Electronic Packaging 117:4, pages 301-306.
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M. Song & R. Viskanta. (1994) Natural convection flow and heat transfer within a rectangular enclosure containing a vertical porous layer. International Journal of Heat and Mass Transfer 37:16, pages 2425-2438.
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M. Mbaye & E. Bilgen. (1993) Conduction and convection heat transfer in composite solar collector systems with porous absorberWärmetransport infolge Leitung und Konvektion durch ein zusammengesetztes Solarkollektor-System mit porösem Absorber. Wärme- und Stoffübertragung 28:5, pages 267-274.
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