Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.

The bioconvection flow of tiny fluid conveying the nanoparticles has been investigated between two concentric cylinders. The contribution of Lorenz force is also focused to inspect the bioconvection thermal transport of tiny particles. The tiny particles are assumed to flow between two concentric cy...

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Main Authors: Lei Zhang, V Puneeth, Muhammad Ijaz Khan, Essam Roshdy El-Zahar, N Manjunath, Nehad Ali Shah, Jae Dong Chung, Sami Ullah Khan, M Imran Khan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2022-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0265026&type=printable
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author Lei Zhang
V Puneeth
Muhammad Ijaz Khan
Essam Roshdy El-Zahar
N Manjunath
Nehad Ali Shah
Jae Dong Chung
Sami Ullah Khan
M Imran Khan
author_facet Lei Zhang
V Puneeth
Muhammad Ijaz Khan
Essam Roshdy El-Zahar
N Manjunath
Nehad Ali Shah
Jae Dong Chung
Sami Ullah Khan
M Imran Khan
author_sort Lei Zhang
collection DOAJ
description The bioconvection flow of tiny fluid conveying the nanoparticles has been investigated between two concentric cylinders. The contribution of Lorenz force is also focused to inspect the bioconvection thermal transport of tiny particles. The tiny particles are assumed to flow between two concentric cylinders of different radii. The first cylinder remains at rest while flow is induced due to second cylinder which rotates with uniform velocity. Furthermore, the movement of tiny particles follows the principle of thermophoresis and Brownian motion as a part of thermal and mass gradient. Similarly, the gyro-tactic microorganisms swim in the nanofluid as a response to the density gradient and constitute bio-convection. The problem is modeled by using the certain laws. The numerical outcomes are computed by using RKF -45 method. The graphical simulations are performed for flow parameters with specific range like 1≤Re≤5, 1≤Ha≤5, 0.5≤Nt≤2.5, 1≤Nb≤3, 0.2≤Sc≤1.8, 0.2≤Pe≤1.0 and 0.2≤Ω≤1.0. It is observed that the flow velocity decreases with the increase in the Hartmann number that signifies the magnetic field. This outcome indicates that the flow velocity can be controlled externally through the magnetic field. Also, the increase in the Schmidt numbers increases the nanoparticle concentration and the motile density.
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publishDate 2022-01-01
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spelling doaj-art-e7bd5d823d44473d9f9ca6705397aea42025-08-20T02:57:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032022-01-01175e026502610.1371/journal.pone.0265026Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.Lei ZhangV PuneethMuhammad Ijaz KhanEssam Roshdy El-ZaharN ManjunathNehad Ali ShahJae Dong ChungSami Ullah KhanM Imran KhanThe bioconvection flow of tiny fluid conveying the nanoparticles has been investigated between two concentric cylinders. The contribution of Lorenz force is also focused to inspect the bioconvection thermal transport of tiny particles. The tiny particles are assumed to flow between two concentric cylinders of different radii. The first cylinder remains at rest while flow is induced due to second cylinder which rotates with uniform velocity. Furthermore, the movement of tiny particles follows the principle of thermophoresis and Brownian motion as a part of thermal and mass gradient. Similarly, the gyro-tactic microorganisms swim in the nanofluid as a response to the density gradient and constitute bio-convection. The problem is modeled by using the certain laws. The numerical outcomes are computed by using RKF -45 method. The graphical simulations are performed for flow parameters with specific range like 1≤Re≤5, 1≤Ha≤5, 0.5≤Nt≤2.5, 1≤Nb≤3, 0.2≤Sc≤1.8, 0.2≤Pe≤1.0 and 0.2≤Ω≤1.0. It is observed that the flow velocity decreases with the increase in the Hartmann number that signifies the magnetic field. This outcome indicates that the flow velocity can be controlled externally through the magnetic field. Also, the increase in the Schmidt numbers increases the nanoparticle concentration and the motile density.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0265026&type=printable
spellingShingle Lei Zhang
V Puneeth
Muhammad Ijaz Khan
Essam Roshdy El-Zahar
N Manjunath
Nehad Ali Shah
Jae Dong Chung
Sami Ullah Khan
M Imran Khan
Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
PLoS ONE
title Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
title_full Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
title_fullStr Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
title_full_unstemmed Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
title_short Applications of bioconvection for tiny particles due to two concentric cylinders when role of Lorentz force is significant.
title_sort applications of bioconvection for tiny particles due to two concentric cylinders when role of lorentz force is significant
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0265026&type=printable
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