Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient

The third grade non-Newtonian MHD flow in the porous vertical tube subjected to a constant body acceleration and pressure gradient was studied using the time fractional derivative by employing the Laplace and the finite Hankel transforms. The Mathematica software was used to simulate the vel...

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Main Authors: Salah Uddin, Salah Uddin, Mohamad, Mahathir, Kamardan, M Ghazali, Sufahani, Suliadi Firdaus
Format: Book Section
Language:English
Published: Penerbit UTHM 2018
Subjects:
Online Access:http://eprints.uthm.edu.my/6964/1/C1598_b4f76d64bdbe06f61c20a14a8570883e.pdf
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author Salah Uddin, Salah Uddin
Mohamad, Mahathir
Kamardan, M Ghazali
Sufahani, Suliadi Firdaus
author_facet Salah Uddin, Salah Uddin
Mohamad, Mahathir
Kamardan, M Ghazali
Sufahani, Suliadi Firdaus
author_sort Salah Uddin, Salah Uddin
collection UTHM
description The third grade non-Newtonian MHD flow in the porous vertical tube subjected to a constant body acceleration and pressure gradient was studied using the time fractional derivative by employing the Laplace and the finite Hankel transforms. The Mathematica software was used to simulate the velocity profile and the Bessel functions with zero order and first order of first kind. The correlations between the flow velocity and the third grade non�Newtonian fluid parameter and the magnetic field were found to be negative
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format Book Section
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institution Universiti Tun Hussein Onn Malaysia
language English
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spelling uthm.eprints-69642022-04-24T00:24:54Z http://eprints.uthm.edu.my/6964/ Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient Salah Uddin, Salah Uddin Mohamad, Mahathir Kamardan, M Ghazali Sufahani, Suliadi Firdaus T Technology (General) The third grade non-Newtonian MHD flow in the porous vertical tube subjected to a constant body acceleration and pressure gradient was studied using the time fractional derivative by employing the Laplace and the finite Hankel transforms. The Mathematica software was used to simulate the velocity profile and the Bessel functions with zero order and first order of first kind. The correlations between the flow velocity and the third grade non�Newtonian fluid parameter and the magnetic field were found to be negative Penerbit UTHM 2018 Book Section PeerReviewed text en http://eprints.uthm.edu.my/6964/1/C1598_b4f76d64bdbe06f61c20a14a8570883e.pdf Salah Uddin, Salah Uddin and Mohamad, Mahathir and Kamardan, M Ghazali and Sufahani, Suliadi Firdaus (2018) Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient. In: A Letter on Applications of Mathematics and Statistics. Penerbit UTHM, pp. 119-127. ISBN 978-967-2216-06-3
spellingShingle T Technology (General)
Salah Uddin, Salah Uddin
Mohamad, Mahathir
Kamardan, M Ghazali
Sufahani, Suliadi Firdaus
Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title_full Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title_fullStr Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title_full_unstemmed Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title_short Fractional derivative on MHD flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
title_sort fractional derivative on mhd flow of the third grade fluid in the porous tube subjected to a constant body acceleration and pressure gradient
topic T Technology (General)
url http://eprints.uthm.edu.my/6964/1/C1598_b4f76d64bdbe06f61c20a14a8570883e.pdf
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