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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 28, 1995 - Issue 5
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Original Articles

MAGNETOHYDRODYNAMIC MIXED CONVECTION FROM A VERTICAL PLATE EMBEDDED IN A POROUS MEDIUM

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Pages 635-645 | Received 23 Sep 1994, Accepted 12 Apr 1995, Published online: 02 Mar 2007

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Dileep Singh Chauhan, Rashmi Agrawal & Priyanka Rastogi. (2012) Magnetohydrodynamic Slip Flow and Heat Transfer in a Porous Medium over a Stretching Cylinder: Homotopy Analysis Method. Numerical Heat Transfer, Part A: Applications 62:2, pages 136-157.
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NelsonO. Moraga, GuillermoC. Sánchez & JoséA. Riquelme. (2010) Unsteady Mixed Convection in a Vented Enclosure Partially Filled with Two Non-Darcian Porous Layers. Numerical Heat Transfer, Part A: Applications 57:7, pages 473-495.
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KhalilM. Khanafer & AliJ. Chamkha. (1998) HYDROMAGNETIC NATURAL CONVECTION FROM AN INCLINED POROUS SQUARE ENCLOSURE WITH HEAT GENERATION. Numerical Heat Transfer, Part A: Applications 33:8, pages 891-910.
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Articles from other publishers (63)

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Muhammad Ashraf, Asifa Ilyas, Zia Ullah & Amir Abbas. (2022) Periodic magnetohydrodynamic mixed convection flow along a cone embedded in a porous medium with variable surface temperature. Annals of Nuclear Energy 175, pages 109218.
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Abdullah M. Alsharif, Ahmed I. Abdellateef & Yasser Abd Elmaboud. (2022) Electroosmotic flow of fractional Oldroyd‐B fluid through a vertical microchannel filled with a homogeneous porous medium: Numerical and semianalytical solutions. Heat Transfer 51:5, pages 4033-4052.
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Nazish Iftikhar, Muhammad Bilal Riaz, Jan Awrejcewicz & Ali Akgül. (2021) Effect of Magnetic Field with Parabolic Motion on Fractional Second Grade Fluid. Fractal and Fractional 5:4, pages 163.
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Nayema Islam Nima, M. Ferdows, S. O. Adesanya & Faris Alzahrani. (2020) Double-diffusivity heat generation effects on bioconvection process embedded in a vertical porous surface with variable fluid properties. Journal of Thermal Analysis and Calorimetry 145:5, pages 2571-2580.
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J. Belabid. (2021) Hydromagnetic Natural Convection from a Horizontal Porous Annulus with Heat Generation or Absorption. Journal of Engineering Physics and Thermophysics 94:4, pages 934-941.
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Vijayaragavan Rajaram, Bharathi Varadharaj & Prakash Jayavel. (2021) Impact of electroosmotic flow on a Casson fluid driven by chemical reaction and convective boundary conditions. Heat Transfer 50:5, pages 4993-5019.
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Dipen Saikia, Utpal Kumar Saha & Gopal Chandra Hazarika. (2021) Atangana-Baleanu and Caputo-Fabrizio Analysis of Fractional Derivatives on MHD Flow past a Moving Vertical Plate with Variable Viscosity and Thermal Conductivity in a Porous Medium. International Journal of Mathematical, Engineering and Management Sciences 6:2, pages 493-509.
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Muhammad Bilal, Salaha Khan, Farhad Ali, Muhammad Arif, Ilyas Khan & Kottakkaran Sooppy Nisar. (2021) Couette flow of viscoelastic dusty fluid in a rotating frame along with the heat transfer. Scientific Reports 11:1.
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Syed Tauseef Saeed, Muhammad Bilal Riaz, Dumitru Baleanu, Ali Akg黮 & Syed Muhammad Husnine. (2021) Exact Analysis of Second Grade Fluid with Generalized Boundary Conditions. Intelligent Automation & Soft Computing 28:2, pages 547-559.
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Nazek Alessa. (2020) Transformation Magnetohydrodynamics in Presence of a Channel Filled with Porous Medium and Heat Transfer of Non-Newtonian Fluid by Using Lie Group Transformations. Journal of Function Spaces 2020, pages 1-6.
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Farhad Ali, Muhammad Bilal, Madeha Gohar, Ilyas Khan, Nadeem Ahmad Sheikh & Kottakkaran Sooppy Nisar. (2020) A Report On Fluctuating Free Convection Flow Of Heat Absorbing Viscoelastic Dusty Fluid Past In A Horizontal Channel With MHD Effect. Scientific Reports 10:1.
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Jabrane Belabid & Soufiane Belhouideg. (2020) Hydromagnetic natural convection from a horizontal porous annulus with heat generation or absorption. MATEC Web of Conferences 307, pages 01005.
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Kondlalli Ganesh Kumar, Sarpabhushana Manjunatha, Bijjanal Jayappa Gireesha, Fahad Munir Abbasi & Sabir Ali Shehzad. (2019) Numerical illustrations of 3D tangent hyperbolic liquid flow past a bidirectional moving sheet with convective heat transfer at the boundary. Heat Transfer-Asian Research 48:5, pages 1899-1912.
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R. Nandkeolyar, M. Narayana, S. S. Motsa & P. Sibanda. (2018) Magnetohydrodynamic Mixed Convective Flow Due to a Vertical Plate With Induced Magnetic Field. Journal of Thermal Science and Engineering Applications 10:6.
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Nadeem Ahmad Sheikh, Farhad Ali, Ilyas Khan & Muhammad Saqib. (2016) A modern approach of Caputo–Fabrizio time-fractional derivative to MHD free convection flow of generalized second-grade fluid in a porous medium. Neural Computing and Applications 30:6, pages 1865-1875.
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M. Veera Krishna & Kamboji Jyothi. (2018) Hall effects on MHD Rotating flow of a Visco-elastic Fluid through a Porous medium Over an Infinite Oscillating Porous Plate with Heat source and Chemical reaction. Materials Today: Proceedings 5:1, pages 367-380.
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Md. Jashim Uddin & Md. Yeakub Ali. (2016) Effects of Hydromagnetic and Thermophoresis of Unsteady Forced Convection Boundary Layer Flow over Flat Plates. Journal of Applied Mathematics and Physics 04:09, pages 1756-1776.
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Ch. RamReddy, P.A. Lakshmi Narayana & S.S. Motsa. (2015) A spectral relaxation method for linear and non-linear stratification effects on mixed convection in a porous medium. Applied Mathematics and Computation 268, pages 991-1000.
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K. Javaherdeh, Mehrzad Mirzaei Nejad & M. Moslemi. (2015) Natural convection heat and mass transfer in MHD fluid flow past a?moving vertical plate with variable surface temperature and?concentration in a porous medium. Engineering Science and Technology, an International Journal 18:3, pages 423-431.
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G.S. Seth, S.M. Hussain & S. Sarkar. (2015) Hydromagnetic natural convection flow with heat and mass transfer of a chemically reacting and heat absorbing fluid past an accelerated moving vertical plate with ramped temperature and ramped surface concentration through a porous medium. Journal of the Egyptian Mathematical Society 23:1, pages 197-207.
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Raj Nandkeolyar & Mrutyunjay Das. (2014) MHD free convective radiative flow past a flat plate with ramped temperature in the presence of an inclined magnetic field. Computational and Applied Mathematics 34:1, pages 109-123.
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R. Nandkeolyar & M. Das. (2013) Unsteady MHD free convection flow of a heat absorbing dusty fluid past a flat plate with ramped wall temperature. Afrika Matematika 25:3, pages 779-798.
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G.S. Seth, G.K. Mahato & S. Sarkar. (2014) MHD natural convection flow with radiative heat transfer past an impulsively moving vertical plate with ramped temperature in the presence of hall current and thermal diffusion. International Journal of Applied Mechanics and Engineering 18:4, pages 1201-1220.
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R. Nandkeolyar, G. S. Seth, O. D. Makinde, P. Sibanda & Md. S. Ansari. (2013) Unsteady Hydromagnetic Natural Convection Flow of a Dusty Fluid Past an Impulsively Moving Vertical Plate With Ramped Temperature in the Presence of Thermal Radiation. Journal of Applied Mechanics 80:6.
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R. Nandkeolyar, M. Das & P. Sibanda. (2013) Unsteady Hydromagnetic Heat and Mass Transfer Flow of a Heat Radiating and Chemically Reactive Fluid Past a Flat Porous Plate with Ramped Wall Temperature. Mathematical Problems in Engineering 2013, pages 1-12.
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T. Chinyoka & O. D. Makinde. (2011) Unsteady hydromagnetic flow of a reactive variable viscosity third‐grade fluid in a channel with convective cooling. International Journal for Numerical Methods in Fluids 69:2, pages 353-365.
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Rita Choudhury & Utpal Jyoti Das. (2012) Heat Transfer to MHD Oscillatory Viscoelastic Flow in a Channel Filled with Porous Medium. Physics Research International 2012, pages 1-5.
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S. Shateyi, P. Sibanda & S. S. Motsa. (2007) Magnetohydrodynamic Flow Past a Vertical Plate With Radiative Heat Transfer. Journal of Heat Transfer 129:12, pages 1708-1713.
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M. Khan, K. Maqbool & T. Hayat. (2006) Influence of Hall current on the flows of a generalized Oldroyd-B fluid in a porous space. Acta Mechanica 184:1-4, pages 1-13.
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Moustafa EL-Shahed. (2006) MHD of a fractional viscoelastic fluid in a circular tube. Mechanics Research Communications 33:2, pages 261-268.
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Rebhi A. Damseh. (2006) Magnetohydrodynamics-Mixed Convection From Radiate Vertical Isothermal Surface Embedded in a Saturated Porous Media. Journal of Applied Mechanics 73:1, pages 54-59.
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Bourhan Tashtoush. (2005) Magnetic and buoyancy effects on melting from a vertical plate embedded in saturated porous media. Energy Conversion and Management 46:15-16, pages 2566-2577.
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T.K. Aldoss, M.A. Al‐Nimr & A.F. Khadrawi. (2005) Effect of the local acceleration term on the MHD transient free convection flow over a vertical plate. International Journal of Numerical Methods for Heat & Fluid Flow 15:3, pages 296-305.
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H. M. Duwairi & Rebhi A. Damseh. (2008) MHD‐Buoyancy Aiding and Opposing Flows with Viscous Dissipation Effects from Radiate Vertical Surfaces. The Canadian Journal of Chemical Engineering 82:3, pages 613-618.
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Ali J. Chamkha. (2004) Unsteady MHD convective heat and mass transfer past a semi-infinite vertical permeable moving plate with heat absorption. International Journal of Engineering Science 42:2, pages 217-230.
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Crossref
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Crossref
M.A. Mansour & N.A. El-Shaer. (2002) Effect of magnetic field on non-Darcy axisymmetric free convection in a power-law fluid saturated porous medium with variable permeability. Journal of Magnetism and Magnetic Materials 250, pages 57-64.
Crossref
Ali J. Chamkha. (2000) Non‐similar solutions for heat and mass transfer by hydro‐magnetic mixed convection flow over a plate in porous media with surface suction or injection. International Journal of Numerical Methods for Heat & Fluid Flow 10:2, pages 142-163.
Crossref
Ali J. Chamkha & Abdul‐Rahim A. Khaled. (2000) Similarity solutions for hydromagnetic mixed convection heat and mass transfer for Hiemenz flow through porous media. International Journal of Numerical Methods for Heat & Fluid Flow 10:1, pages 94-115.
Crossref
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.
Crossref
Khalil M. Khanafer & Ali J. Chamkha. (1999) Mixed convection flow in a lid-driven enclosure filled with a fluid-saturated porous medium. International Journal of Heat and Mass Transfer 42:13, pages 2465-2481.
Crossref
Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 321 343 .
Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 33 50 .
A. J. Chamkha. (1997) A Note on Unsteady Hydromagnetic Free Convection From a Vertical Fluid Saturated Porous Medium Channel. Journal of Heat Transfer 119:3, pages 638-641.
Crossref
Robert Siegel. (1997) Green's Function to Determine Temperature Distribution in a Semitransparent Thermal Barrier Coating. Journal of Thermophysics and Heat Transfer 11:2, pages 315-317.
Crossref

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