Effects of thermal radiation and space porosity on MHD mixed convection flow in a vertical channel using homotopy analysis method
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Publication:720083
DOI10.1016/J.CNSNS.2009.09.003zbMath1222.76081OpenAlexW2028179420MaRDI QIDQ720083
Publication date: 13 October 2011
Published in: Communications in Nonlinear Science and Numerical Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cnsns.2009.09.003
PDEs in connection with fluid mechanics (35Q35) Magnetohydrodynamics and electrohydrodynamics (76W05) Numerical methods for ordinary differential equations (65L99)
Related Items (13)
On flow of a fourth-grade fluid with heat transfer ⋮ On the well-posedness of strong solution to ideal magnetohydrodynamic equations ⋮ Numeric-analytic solutions of mixed-type systems of balance laws ⋮ MHD free-convective flow of micropolar and Newtonian fluids through porous medium in a vertical channel ⋮ Numerical analysis of mixed convection over horizontal moving porous flat plate by the method of one parameter continuous group theory ⋮ Soret-Dufour effects on MHD rotating flow of a viscoelastic fluid ⋮ MHD natural convection flow past an impulsively started infinite vertical porous plate with Newtonian heating in the presence of radiation ⋮ Homotopy analysis method with a non-homogeneous term in the auxiliary linear operator ⋮ Predictor homotopy analysis method and its application to some nonlinear problems ⋮ MHD mixed convection ferro \(\mathrm{Fe_3O}_4\)/Cu-hybrid-nanofluid runs in a vertical channel ⋮ Soret effect due to mixed convection on unsteady magnetohydrodynamic flow past a semi infinite vertical permeable moving plate in presence of thermal radiation, heat absorption and homogenous chemical reaction ⋮ Natural convection boundary layer flow of a double diffusive and rotating fluid past a vertical porous plate ⋮ Entropy generation analysis for a radiative micropolar fluid flow through a vertical channel saturated with non-Darcian porous medium
Cites Work
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- Magnetohydrodynamic mixed convection in a vertical channel
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- Analytical solution to stagnation-point flow and heat transfer over a stretching sheet based on homotopy analysis
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- Radiation effects on combined convection over a vertical flat plate embedded in a porous medium of variable porosity
- Heat transfer by fully developed flow and viscous heating in a vertical channel with prescribed wall heat fluxes
- Solving solitary waves with discontinuity by means of the homotopy analysis method
- Fully developed laminar free convection between vertical plates heated asymmetrically
- On the analytic solution of magnetohydrodynamic flows of non-Newtonian fluids over a stretching sheet
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