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Electromagnetohydrodynamic Flow And Heat Transfer Of Third Grade Fluids Between Two Micro-parallel Plates

Posted on:2017-01-27Degree:MasterType:Thesis
Country:ChinaCandidate:L WangFull Text:PDF
GTID:2180330485961353Subject:Mathematics
Abstract/Summary:PDF Full Text Request
Electromagnetohydrodynamic micro-pump of third grade fluids between two micro-parallel plates is performed in this paper. The flow forced by the Lorentz force, produced by the interaction of a vertical magnetic field and an externally horizontal imposed electrical field, is assumed to be unidirectional and one dimensional. Analytical solutions of velocity and temperature are obtained by perturbation techniques under the assumption of small non-Newtonian behavior and the Chebyshev spectral collocation method is used to solve the same problem numerically. Analytical solutions are contrasted with the numerical solutions within admissible parameter range and the agreements are excellent. The effects of Hartman number Ha (the ratio of magnetic forces to viscous forces), non-Newtonian parameter A (the dimensionless parameter related to the non-Newtonian behavior), the dimensionless electrical strength parameter H and Brinkman number Br (the ratio of heat produced by viscous dissipation to heat transported by molecular conduction) on the velocity and temperature are investigated graphically and discussed in detail. In addition, the dependence of Nusselt number (the strength of convective heat exchange) on corresponding parameters is presented. Results show that Nusselt number decreases with Hartman number Ha and increases with Brinkman number Br and dimensionless parameters H.
Keywords/Search Tags:Electromagnetohydrodynamic (EMHD) flow, Perturbation techniques, Lorentz force, Third grade fluid
PDF Full Text Request
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