نتایج جستجو برای: mhd eyring fluid model

تعداد نتایج: 2291146  

Journal: : 2021

The goal of this work is to look at how heat transfer affects the oscillating flow a hydrodynamically magnetizing Prandtl-Eyring fluid through porous material under impact temperature and concentration two different engineering conditions: Poiseuille Couette flow. To get an unambiguous formula for motion, we utilized perturbation approach. Graphs are used illustrate findings..

Journal: :Open Physics 2022

Abstract The electroosmotic flow of non-Newtonian fluid–Eyring fluid in microparallel pipes under high zeta potential driven by the combination pressure and electric force is studied. Without using Debye–Hückel (DH) linear approximation, numerical solutions distribution velocity obtained finite difference method are compared with analytical approximate DH approximation. results show that this a...

1998
Abhik Basu Anirban Sain Sujan K. Dhar Rahul Pandit

From a numerical study of the magnetohydrodynamic (MHD) equations we show, for the first time in three dimensions sd ­ 3d, that velocity and magnetic-field structure functions exhibit multiscaling, extended self-similarity (ESS), and generalized extended self-similarity (GESS). We propose a new shell model for homogeneous and isotropic MHD turbulence, which preserves all the invariants of ideal...

An attempt is made for the first time to solve the quadratic and cubic model of magneto hydrodynamic Poiseuille flow of Phan-Thein-Tanner (PTT). A series solution of magneto hydrodynamic (MHD) flow is developed by using homotopy perturbation method (HPM). The results are presented graphically and the effects of non-dimensional parameters on the flow field are analyzed. The results reveal many i...

Journal: :Lab on a chip 2002
Jonathan West Boris Karamata Brian Lillis James P Gleeson John Alderman John K Collins William Lane Alan Mathewson Helen Berney

Continuous flow microreactors with an annular microchannel for cyclical chemical reactions were fabricated by either bulk micromachining in silicon or by rapid prototyping using EPON SU-8. Fluid propulsion in these unusual microchannels was achieved using AC magnetohydrodynamic (MHD) actuation. This integrated micropumping mechanism obviates the use of moving parts by acting locally on the elec...

Journal: :Computer Physics Communications 2011
Uri Shumlak R. Lilly N. Reddell E. Sousa B. Srinivasan

The multi-fluid plasma model only assumes local thermodynamic equilibrium within each fluid, e.g. ion and electron fluids for the two-fluid plasma model. Derivation of the MHD model involves several asymptotic and simplifying assumptions that can limit its applicability. Therefore, the two-fluid plasma model more accurately represents the appropriate physical processes. Physical parameters indi...

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