Thermal-diffusion and diffusion-thermo effects on MHD flow of viscous fluid between expanding or contracting rotating porous disks with viscous dissipation
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Publication:5963173
DOI10.1016/j.joems.2014.06.017zbMath1332.76017OpenAlexW1967372663MaRDI QIDQ5963173
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Publication date: 4 March 2016
Published in: Journal of the Egyptian Mathematical Society (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.joems.2014.06.017
Hartmann numberhomotopy analysis methodDufour numberexpansion ratiorotating porous diskssoret number
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Related Items (4)
Change in internal energy of Carreau fluid flow along with ohmic heating: a von Karman application ⋮ Thermal diffusion and diffusion thermo effects on unsteady MHD fluid flow past a moving vertical plate embedded in porous medium in the presence of Hall current and rotating system ⋮ Radiation effects in flow through porous medium over a rotating disk with variable fluid properties ⋮ Flow and heat transfer of a second grade fluid between two stretchable rotating disks
Cites Work
- Numerical investigations of asymmetric flow of a micropolar fluid between two porous disks
- Homotopy analysis method for the asymmetric laminar flow and heat transfer of viscous fluid between contracting rotating disks
- Thermal-diffusion and diffusion-thermo effects on axisymmetric flow of a second grade fluid
- Analysis of flow and heat transfer of viscous fluid between contracting rotating disks
- Homotopy analysis method for the heat transfer in a asymmetric porous channel with an expanding or contracting wall
- The application of homotopy analysis method to nonlinear equations arising in heat transfer
- An analytic solution of unsteady boundary-layer flows caused by an impulsively stretching plate
- Homotopy based solutions of the Navier–Stokes equations for a porous channel with orthogonally moving walls
- Unsteady flows in a semi-infinite contracting or expanding pipe
- Moderate‐to‐large injection and suction driven channel flows with expanding or contracting walls
- The effect of normal blowing on the flow near a rotating disk of infinite extent
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