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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 46, 2004 - Issue 10
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Original Articles

A NUMERICAL STUDY OF THE HEAT TRANSFER TO FLUID FLOW THROUGH CIRCULAR POROUS PASSAGES

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Pages 929-955 | Received 01 May 2004, Accepted 01 Jul 2004, Published online: 17 Aug 2010

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Read on this site (6)

Abhishek Banerjee, A. Haji-Sheikh & Seiichi Nomura. (2012) Heat Transfer with Axial Conduction in Triangular Ducts Filled with Saturated Porous Materials. Numerical Heat Transfer, Part A: Applications 62:1, pages 1-24.
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Guven Komurgoz, Aytac Arikoglu, Ebru Turker & Ibrahim Ozkol. (2010) Second-Law Analysis for an Inclined Channel Containing Porous-Clear Fluid Layers by Using the Differential Transform Method. Numerical Heat Transfer, Part A: Applications 57:8, pages 603-623.
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Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
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Zhi-Hua Wang & Kang Hai Tan. (2008) Green's Function Approach for Heat Conduction: Application to Steel Members Protected by Intumescent Paint. Numerical Heat Transfer, Part B: Fundamentals 54:6, pages 435-453.
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Nuri Yucel & R. Tolga Guven. (2007) Forced-Convection Cooling Enhancement of Heated Elements in a Parallel-Plate Channels using Porous Inserts. Numerical Heat Transfer, Part A: Applications 51:3, pages 293-312.
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NicolauB. Santos & MarceloJ. S. de Lemos. (2006) Flow and Heat Transfer in a Parallel-Plate Channel with Porous and Solid Baffles. Numerical Heat Transfer, Part A: Applications 49:5, pages 471-494.
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Articles from other publishers (22)

A. Haji-Sheikh, Filippo de Monte & W.J. Minkowycz. 2020. 95 195 .
. 2016. Liquid Acquisition Devices for Advanced In-Space Cryogenic Propulsion Systems. Liquid Acquisition Devices for Advanced In-Space Cryogenic Propulsion Systems 403 409 .
. 2016. Liquid Acquisition Devices for Advanced In-Space Cryogenic Propulsion Systems. Liquid Acquisition Devices for Advanced In-Space Cryogenic Propulsion Systems 421 458 .
Yi Shen Chee, Tiew Wei Ting & Yew Mun Hung. (2015) Entropy generation of viscous dissipative flow in thermal non-equilibrium porous media with thermal asymmetries. Energy 89, pages 382-401.
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Maziar Dehghan, Milad Tajik Jamal-Abad & Saman Rashidi. (2014) Analytical interpretation of the local thermal non-equilibrium condition of porous media imbedded in tube heat exchangers. Energy Conversion and Management 85, pages 264-271.
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Asgar Minaei & Alimohammad Karami. (2013) Effect of variable viscosity and thermal conductivity on heat transfer in a circular porous passage with axial conduction. Heat Transfer-Asian Research 42:2, pages 125-132.
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Mojtaba Aghajani Delavar & Mehdi Hedayatpour. (2012) Forced convection and entropy generation inside a channel with a heat-generating porous block. Heat Transfer-Asian Research 41:7, pages 580-600.
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. 2012. Turbulence in Porous Media. Turbulence in Porous Media 353 371 .
Mohamed A. Teamah, Wael M. El-Maghlany & Mohamed M. Khairat Dawood. (2011) Numerical simulation of laminar forced convection in horizontal pipe partially or completely filled with porous material. International Journal of Thermal Sciences 50:8, pages 1512-1522.
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R.J. Goldstein, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen, S. Garrick, V. Srinivasan, K. Ghosh & R. Mittal. (2010) Heat transfer—A review of 2004 literature. International Journal of Heat and Mass Transfer 53:21-22, pages 4343-4396.
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A. Haji-Sheikh. (2009) Determination of Heat Transfer in Ducts With Axial Conduction by Variational Calculus. Journal of Heat Transfer 131:9.
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W.J. Minkowycz & A. Haji-Sheikh. (2009) Asymptotic behaviors of heat transfer in porous passages with axial conduction. International Journal of Heat and Mass Transfer 52:13-14, pages 3101-3108.
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A. Haji-Sheikh, J.V. Beck & Donald E. Amos. (2008) Axial heat conduction effects in the entrance region of parallel plate ducts. International Journal of Heat and Mass Transfer 51:25-26, pages 5811-5822.
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K. Hooman. (2008) Comments on “Viscous-dissipation effects on the heat transfer in a Poiseuille flow” by O. Aydin and M. Avci. Applied Energy 85:1, pages 70-72.
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K. Hooman & A. Haji-Sheikh. (2007) Analysis of heat transfer and entropy generation for a thermally developing Brinkman–Brinkman forced convection problem in a rectangular duct with isoflux walls. International Journal of Heat and Mass Transfer 50:21-22, pages 4180-4194.
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K. Hooman, A. Haji-Sheikh & D.A. Nield. (2007) Thermally developing Brinkman–Brinkman forced convection in rectangular ducts with isothermal walls. International Journal of Heat and Mass Transfer 50:17-18, pages 3521-3533.
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K. Hooman, H. Gurgenci & A.A. Merrikh. (2007) Heat transfer and entropy generation optimization of forced convection in porous-saturated ducts of rectangular cross-section. International Journal of Heat and Mass Transfer 50:11-12, pages 2051-2059.
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K. Hooman & A. Ejlali. (2007) Entropy generation for forced convection in a porous saturated circular tube with uniform wall temperature. International Communications in Heat and Mass Transfer 34:4, pages 408-419.
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W.J. Minkowycz & A. Haji-Sheikh. (2006) Heat transfer in parallel plates and circular porous passages with axial conduction. International Journal of Heat and Mass Transfer 49:13-14, pages 2381-2390.
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A. Haji-Sheikh. (2006) Fully Developed Heat Transfer to Fluid Flow in Rectangular Passages Filled With Porous Materials. Journal of Heat Transfer 128:6, pages 550-556.
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. 2006. Turbulence in Porous Media. Turbulence in Porous Media 313 328 .
A. Haji-Sheikh, E.M. Sparrow & W.J. Minkowycz. (2005) Heat transfer to flow through porous passages using extended weighted residuals method—a Green’s function solution. International Journal of Heat and Mass Transfer 48:7, pages 1330-1349.
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