Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle

The presence of the non-uniform heat source/sink of MHD nanofluid have been investigated numerically which resulted from a past stretching surface. The model includes the effects of parameter such as heat source/sink, volume fraction of dust particles, magnetic field, mass concentration of dust part...

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Main Authors: Zaimuddin, Izzatun Nazurah, Kandasamy, Ramasamy, Aman, Fazlina
Format: Article
Language:English
Published: INSTITUTE OF ADVANCED SCIENTIFIC RESEARCH 2020
Subjects:
Online Access:http://eprints.uthm.edu.my/6805/1/AJ%202020%20%28428%29.pdf
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author Zaimuddin, Izzatun Nazurah
Kandasamy, Ramasamy
Aman, Fazlina
author_facet Zaimuddin, Izzatun Nazurah
Kandasamy, Ramasamy
Aman, Fazlina
author_sort Zaimuddin, Izzatun Nazurah
collection UTHM
description The presence of the non-uniform heat source/sink of MHD nanofluid have been investigated numerically which resulted from a past stretching surface. The model includes the effects of parameter such as heat source/sink, volume fraction of dust particles, magnetic field, mass concentration of dust particles, fluid particle interaction and porosity effects. The basic governing of partial differential equations of the flow and heat transfer have been reduced to a set of nonlinear ordinary differential equations by using steady state flow in similarity transformation and then solved analytically using shooting technique. Various physical parameters’ effects on velocity and temperature profiles of the flow are discussed and presented through graphs in details. Numerical results obtained are verified by comparing the present study with the existed study. The result of the present study proves to be highly satisfactory.
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spelling uthm.eprints-68052022-03-21T04:01:24Z http://eprints.uthm.edu.my/6805/ Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle Zaimuddin, Izzatun Nazurah Kandasamy, Ramasamy Aman, Fazlina T Technology (General) TP155-156 Chemical engineering The presence of the non-uniform heat source/sink of MHD nanofluid have been investigated numerically which resulted from a past stretching surface. The model includes the effects of parameter such as heat source/sink, volume fraction of dust particles, magnetic field, mass concentration of dust particles, fluid particle interaction and porosity effects. The basic governing of partial differential equations of the flow and heat transfer have been reduced to a set of nonlinear ordinary differential equations by using steady state flow in similarity transformation and then solved analytically using shooting technique. Various physical parameters’ effects on velocity and temperature profiles of the flow are discussed and presented through graphs in details. Numerical results obtained are verified by comparing the present study with the existed study. The result of the present study proves to be highly satisfactory. INSTITUTE OF ADVANCED SCIENTIFIC RESEARCH 2020 Article PeerReviewed text en http://eprints.uthm.edu.my/6805/1/AJ%202020%20%28428%29.pdf Zaimuddin, Izzatun Nazurah and Kandasamy, Ramasamy and Aman, Fazlina (2020) Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle. Jour of adv research in dynamical & control systems, 12 (2). pp. 664-672. ISSN 1943-023X https://doi.org/10.5373/JARDCS/V12SP2/SP20201119
spellingShingle T Technology (General)
TP155-156 Chemical engineering
Zaimuddin, Izzatun Nazurah
Kandasamy, Ramasamy
Aman, Fazlina
Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title_full Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title_fullStr Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title_full_unstemmed Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title_short Heat Source/Sink on MHD Flow of Dusty Nano fluid over a Stretching Surface with Volume Fraction of Dust Particle
title_sort heat source sink on mhd flow of dusty nano fluid over a stretching surface with volume fraction of dust particle
topic T Technology (General)
TP155-156 Chemical engineering
url http://eprints.uthm.edu.my/6805/1/AJ%202020%20%28428%29.pdf
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