Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field

A complete thermal analysis is performed for the propulsion of cilia in an inclined channel. Coating around the channel walls is provided by a Carreau fluid under a uniform magnetic field. Uniformly grown cilia produce propulsive metachronal waves by moving in a coordinated rhythm along the channel...

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Main Authors: Sufian Munawar, Najma Saleem
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Coatings
Subjects:
Online Access:https://www.mdpi.com/2079-6412/10/3/240
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spelling doaj-eba5500aeba046b4b192ffc06d7167652020-11-25T02:55:54ZengMDPI AGCoatings2079-64122020-03-0110324010.3390/coatings10030240coatings10030240Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic FieldSufian Munawar0Najma Saleem1Department of Quantitative Methods, College of Business Administration, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam 34212, Saudi ArabiaDepartment of Mathematics and Natural Sciences, Prince Mohammad Bin Fahd University, Khobar 31952, Saudi ArabiaA complete thermal analysis is performed for the propulsion of cilia in an inclined channel. Coating around the channel walls is provided by a Carreau fluid under a uniform magnetic field. Uniformly grown cilia produce propulsive metachronal waves by moving in a coordinated rhythm along the channel surface and adapt an elliptic path along the direction of flow. Using lubrication approximations, the governing equations, formulated in the wave frame of reference, are solved by the perturbation method. Validation of the analytic solution is provided by computing the solution numerically with the shooting method. This study is concerned with the parametric consequences on pertinent flow and heat transfer quantities, such as streamlines, velocity profile, temperature profile, entropy lines and the Bejan number. The results reveal that large cilia propel the axial velocity near the channel wall but put hindrance to the axial velocity and the temperature profile in the central part of the channel. The entropy production in the channel reduces for large cilia and a high Hartmann number.https://www.mdpi.com/2079-6412/10/3/240second-law analysismagnetic fieldinclined channelcarreau fluidciliary motion
collection DOAJ
language English
format Article
sources DOAJ
author Sufian Munawar
Najma Saleem
spellingShingle Sufian Munawar
Najma Saleem
Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
Coatings
second-law analysis
magnetic field
inclined channel
carreau fluid
ciliary motion
author_facet Sufian Munawar
Najma Saleem
author_sort Sufian Munawar
title Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
title_short Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
title_full Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
title_fullStr Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
title_full_unstemmed Second Law Analysis of Ciliary Pumping Transport in an Inclined Channel Coated with Carreau Fluid under a Magnetic Field
title_sort second law analysis of ciliary pumping transport in an inclined channel coated with carreau fluid under a magnetic field
publisher MDPI AG
series Coatings
issn 2079-6412
publishDate 2020-03-01
description A complete thermal analysis is performed for the propulsion of cilia in an inclined channel. Coating around the channel walls is provided by a Carreau fluid under a uniform magnetic field. Uniformly grown cilia produce propulsive metachronal waves by moving in a coordinated rhythm along the channel surface and adapt an elliptic path along the direction of flow. Using lubrication approximations, the governing equations, formulated in the wave frame of reference, are solved by the perturbation method. Validation of the analytic solution is provided by computing the solution numerically with the shooting method. This study is concerned with the parametric consequences on pertinent flow and heat transfer quantities, such as streamlines, velocity profile, temperature profile, entropy lines and the Bejan number. The results reveal that large cilia propel the axial velocity near the channel wall but put hindrance to the axial velocity and the temperature profile in the central part of the channel. The entropy production in the channel reduces for large cilia and a high Hartmann number.
topic second-law analysis
magnetic field
inclined channel
carreau fluid
ciliary motion
url https://www.mdpi.com/2079-6412/10/3/240
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AT najmasaleem secondlawanalysisofciliarypumpingtransportinaninclinedchannelcoatedwithcarreaufluidunderamagneticfield
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