Effect of endoscope on the peristaltic transport of a couple stress fluid with heat transfer: Application to biomedicine

Author:

Ramesh K.,Devakar M.

Abstract

Abstract In this investigation, we have studied the problem of peristaltic flow with heat transfer through the gap between coaxial inclined tubes where the inner tube is rigid and the outer tube has sinusoidal wave travelling down its wall. The problem has been formulated in cylindrical coordinate system. The equations governing the flow have been simplified under the long wavelength and low Reynolds number assumptions. The exact solution is obtained for the temperature profile. The perturbation solutions for the velocity and pressure gradient are obtained for small couple stress parameter. Pressure difference per wavelength and frictional forces on the tube walls have been computed numerically. Results are demonstrated for various flow parameters. The better pumping results occur in vertical tube, while less pumping is seen in horizontal tube. The size of trapped bolus is small in triangular wave as compared to other waves. The present study has a wide range of applications in bio-medical engineering like the transport phenomenon in peristaltic micro pumps.

Publisher

Walter de Gruyter GmbH

Subject

Computer Networks and Communications,General Engineering,Modeling and Simulation,General Chemical Engineering

Reference18 articles.

1. The e ects of endoscope and heat transfer on the peristaltic flow of a second grade fluid in an inclined tube of Mechanics in Medicine and Biology;Ramesh;Journal,2016

2. Simultaneous e ects of coagulation and variable magnetic eld on peristaltically induced motion of Je rey nanofluid containing gyrotactic mi - croorganism;Bhatti;Microvascular Research,2017

3. Magnetohydrodynamic peri - staltic flow of Pseudoplastic fluid in a vertical asymmetric channel through porous medium with heat and mass trans - fer of Science and Technology Transactions A;Ramesh;Iranian Journal Science,2017

4. Steady streaming ef - fect on the flow of a couple stress fluid through a constricted annulus of Mechanics;Srinivasacharya;Archives,2012

5. Flow of couple stress fluid through stenotic blood vessels of Biomechanics;Srivastava;Journal,1985

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