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Physiological Flow of Jeffrey Six Constant Fluid Model due to Ciliary Motion
Authors:A Shaheen  S Hussain  S Nadeem
Institution:1. Department of Mathematics, Capital University of Science and Technology, Islamabad, Pakistan; 2. Department of Mathematics, Quaid-i-Azam University, Islamabad, Pakistan
Abstract:The main purpose of this article is to present a mathematical model of ciliary motion in an annulus. In this analysis, the peristaltic motion of non-Newtonian Jeffrey six constant fluid is observed in an annulus with ciliated tips in the presence of heat and mass transfer. The effects of viscous dissipation are also considered. The flow equations of non-Newtonian fluid for the two-dimensional tube in cylindrical coordinates are simplified using the low Reynolds number and long wave-length approximations. The main equations for Jeffrey six constant fluid are considered in cylindrical coordinates system. The resulting nonlinear problem is solved using the regular perturbation technique in terms of a variant of small dimensionless parameter α. The results of the solutions for velocity, temperature and concentration field are presented graphically. Bk is Brinkman number, ST is soret number, and SH is the Schmidth number. Outcome for the longitudinal velocity, pressure rise, pressure gradient and stream lines are represented through graphs. In the history, the viscous-dissipation effect is usually represented by the Brinkman number.
Keywords:ciliary motion  metachronal wave  Jeffrey six-constant fluid  viscous dissipation effects and perturbation method  
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