Entropy generation minimization (EGM) in magneto peristalsis with variable properties.

Abstract:

OBJECTIVE AND BACKGROUND:This article featuring the peristaltic transport of viscous material with variable properties (i.e. temperature dependent viscosity and thermal conductivity) through curved configuration. Fluid saturating through porous channel walls of uniform space. Entropy generation consideration here is to analyze irreversibility aspects. Channel boundaries retain the velocity and thermal slip conditions. METHOD:Wave frame of reference is attained with the utilization of long wavelength and small Reynolds number approach. Solution of the simplified coupled system of dimensionless constraints is obtained numerically. Detailed analysis of important quantities of interest has been presented in discussion portion. RESULTS:Entropy generation variation near center is very small whereas in the vicinity of the channel wall is larger. Bejan number has reverse variation as observed for entropy generation. CONCLUSION:Variable characteristics of viscosity has opposite impact on velocity and temperature is observed. It is also noticed small irreversibility effects are obtained for higher varying viscosity and thermal conductivity near the vicinity of the channel walls.

authors

Farooq S,Hayat T,Khan MI,Alsaedi A

doi

10.1016/j.cmpb.2019.105045

subject

Has Abstract

pub_date

2020-04-01 00:00:00

pages

105045

eissn

0169-2607

issn

1872-7565

pii

S0169-2607(19)30711-4

journal_volume

186

pub_type

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