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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 27, 1995 - Issue 1
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Original Articles

HYDROMAGNETIC NATURAL CONVECTION IN A TILTED RECTANGULAR POROUS ENCLOSURE

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Pages 107-127 | Received 06 Jan 1994, Accepted 22 Mar 1994, Published online: 27 Feb 2007

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V. Mani Rathnam, Pratibha Biswal & Tanmay Basak. (2016) Analysis of entropy generation during natural convection within entrapped porous triangular cavities during hot or cold fluid disposal. Numerical Heat Transfer, Part A: Applications 69:9, pages 931-956.
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L. Kolsi, A. Abidi, M. N. Borjini, N. Daous & H. Ben Aïssia. (2007) Effect of an External Magnetic Field on the 3-D Unsteady Natural Convection in a Cubical Enclosure. Numerical Heat Transfer, Part A: Applications 51:10, pages 1003-1021.
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Kamil Kahveci. (2007) A Differential Quadrature Solution of Natural Convection in an Enclosure with a Finite-Thickness Partition. Numerical Heat Transfer, Part A: Applications 51:10, pages 979-1002.
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JalalM. Jalil & KaysA. Al-Tae'y. (2007) The Effect of Nonuniform Magnetic Field on Natural Convection in an Enclosure. Numerical Heat Transfer, Part A: Applications 51:9, pages 899-917.
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I. E. Sarris, G. K. Zikos, A. P. Grecos & N. S. Vlachos. (2006) On the Limits of Validity of the Low Magnetic Reynolds Number Approximation in MHD Natural-Convection Heat Transfer. Numerical Heat Transfer, Part B: Fundamentals 50:2, pages 157-180.
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W. Bian, P. Vasseur & E. Bilgen. (1996) EFFECT OF AN EXTERNAL MAGNETIC FIELD ON BUOYANCY-DRIVEN FLOW IN A SHALLOW POROUS CAVITY. Numerical Heat Transfer, Part A: Applications 29:6, pages 625-638.
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Articles from other publishers (20)

Damodara Priyanka, Pratibha Biswal & Tanmay Basak. (2022) Role of curved walls on efficient thermal convection in porous beds confined within enclosures: heatline and entropy production maps. International Journal of Numerical Methods for Heat & Fluid Flow 33:5, pages 1661-1702.
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Munyaradzi Rudziva, Precious Sibanda, Osman A. I. Noreldin & Sicelo P. Goqo. (2022) A numerical study of heat and mass transport by double‐diffusive magnetoconvection in an electrically conducting fluid under sinusoidal/non‐sinusoidal rotational modulation. Heat Transfer 51:6, pages 5552-5588.
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Zaihar Yaacob, Mohammad Khatim Hasan & Bahari Idrus. 2022. Towards Intelligent Systems Modeling and Simulation. Towards Intelligent Systems Modeling and Simulation 39 46 .
Pankaj Mishra & Dhirendra Kumar. (2021) Magnetic field and Rotation effect on thermal stability in an Anisotropic couple-stress fluid saturated Porous Layer under presence of Cross-Diffusion. Journal of Physics: Conference Series 1849:1, pages 012009.
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İman ZAHMATKESH. (2020) EFFECT OF MAGNETIC FIELD ORIENTATION ON NANOFLUID FREE CONVECTION IN A POROUS CAVITY: A HEAT VISUALIZATION STUDY. Journal of Thermal Engineering 6:1, pages 170-186.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 363 437 .
M.M. Rahman, S. Mojumder, S. Saha, Anwar H. Joarder, R. Saidur & A.G. Naim. (2015) Numerical and statistical analysis on unsteady magnetohydrodynamic convection in a semi-circular enclosure filled with ferrofluid. International Journal of Heat and Mass Transfer 89, pages 1316-1330.
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Masoud Kharati Koopaee & Iman Jelodari. (2014) Numerical investigation of magnetic field inclination angle on transient natural convection in an enclosure filled with nanofluid. Engineering Computations 31:7, pages 1342-1360.
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Z. Alloui, P. Vasseur, V. A. F. Costa & A. C. M. Sousa. (2013) Effect of a non-constant magnetic field on natural convection in a horizontal porous layer heated from the bottom. Journal of Engineering Mathematics 81:1, pages 141-155.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2013. Convection in Porous Media. Convection in Porous Media 331 396 .
Atul K. Srivastava, B.S. Bhadauria & Vinod K. Gupta. (2012) Magneto-convection in an anisotropic porous layer with Soret effect. International Journal of Non-Linear Mechanics 47:5, pages 426-438.
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B.S. Bhadauria & Atul K. Srivastava. (2010) Magneto-double diffusive convection in an electrically conducting-fluid-saturated porous medium with temperature modulation of the boundaries. International Journal of Heat and Mass Transfer 53:11-12, pages 2530-2538.
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D.C. Lo. (2010) High-resolution simulations of magnetohydrodynamic free convection in an enclosure with a transverse magnetic field using a velocity–vorticity formulation. International Communications in Heat and Mass Transfer 37:5, pages 514-523.
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B. S. Bhadauria & Aalam Sherani. (2007) Onset of Darcy-Convection in a Magnetic-Fluid-Saturated Porous Medium Subject to Temperature Modulation of the Boundaries. Transport in Porous Media 73:3, pages 349-368.
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B. S. Bhadauria. (2008) Combined Effect of Temperature Modulation and Magnetic Field on the Onset of Convection in an Electrically Conducting-Fluid-Saturated Porous Medium. Journal of Heat Transfer 130:5.
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Yasin Varol, Hakan F. Oztop & Ioan Pop. (2008) Numerical analysis of natural convection for a porous rectangular enclosure with sinusoidally varying temperature profile on the bottom wall. International Communications in Heat and Mass Transfer 35:1, pages 56-64.
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João A. Lima, João N.N. Quaresma & Emanuel N. Macêdo. (2007) Integral transform analysis of MHD flow and heat transfer in parallel-plates channels. International Communications in Heat and Mass Transfer 34:4, pages 420-431.
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E.r.g Eckert, R.J Goldstein, W.e Ibele, S.V Patankar, T.W Simon, P.J Strykowski, K.K Tamma, T.H Kuehn, A Bar-Cohen, J.V.R Heberlein, J.H Davidson, J Bischof, F Kulacki & U Kortshagen. (1999) Heat transfer—a review of 1995 literature. International Journal of Heat and Mass Transfer 42:15, pages 2717-2797.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 261 319 .
S. Alchaar, P. Vasseur & E. Bilgen. (1995) Effects of a magnetic field on the onset of convection in a porous mediumEinfluß eines Magnetfeldes auf das Einsetzen der Konvektion in einem porösen Medium. Heat and Mass Transfer 30:4, pages 259-267.
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