The dynamics of magnetic nanoparticle motion in a straight microvessel

In this study, we investigate the trajectory of magnetic nanoparticle flowing through a microvessel in the presence of cylindrical magnet. By using the equation of motion of particle in the presence of magnetic and fluidic forces, the motion trajectory of magnetic particle in the microvessel is calc...

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Main Authors: E Kadivar, Z Keshavarz
Format: Article
Language:English
Published: Isfahan University of Technology 2022-02-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/article_1736_09fb822a190ec74890018b76a411412b.pdf
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author E Kadivar
Z Keshavarz
author_facet E Kadivar
Z Keshavarz
author_sort E Kadivar
collection DOAJ
description In this study, we investigate the trajectory of magnetic nanoparticle flowing through a microvessel in the presence of cylindrical magnet. By using the equation of motion of particle in the presence of magnetic and fluidic forces, the motion trajectory of magnetic particle in the microvessel is calculated. Our numerical results show that the probability of trapping magnetic particles in the straight microvessel is a function of the intensity of the magnetic field, particle radius, particle magnetization, and diameter of vessel. In this study, we investigate the effect of particle radius, magnet magnetization, particle saturation magnetization and vessel radius on the trajectory of magnetic nanoparticle flowing through the straight vessel. The results show that with increasing particle radius, magnet magnetization, particle saturation magnetization and also with decreasing vessel radius, the probability of trapping a floating particle in the channel increases
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spelling doaj.art-33a9084da7c34b2cb43f8f57b01126ee2022-12-22T03:38:20ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642022-02-0121459760610.47176/ijpr.21.4.111821736The dynamics of magnetic nanoparticle motion in a straight microvesselE Kadivar0Z Keshavarz1Department of Physics, Shiraz University of Technology, Shiraz, IranDepartment of Physics, Shiraz University of Technology, Shiraz, IranIn this study, we investigate the trajectory of magnetic nanoparticle flowing through a microvessel in the presence of cylindrical magnet. By using the equation of motion of particle in the presence of magnetic and fluidic forces, the motion trajectory of magnetic particle in the microvessel is calculated. Our numerical results show that the probability of trapping magnetic particles in the straight microvessel is a function of the intensity of the magnetic field, particle radius, particle magnetization, and diameter of vessel. In this study, we investigate the effect of particle radius, magnet magnetization, particle saturation magnetization and vessel radius on the trajectory of magnetic nanoparticle flowing through the straight vessel. The results show that with increasing particle radius, magnet magnetization, particle saturation magnetization and also with decreasing vessel radius, the probability of trapping a floating particle in the channel increaseshttp://ijpr.iut.ac.ir/article_1736_09fb822a190ec74890018b76a411412b.pdfmicrovesselcylindrical magnetmagnetic nanoparticletrajectory of particlemagnetic susceptibility
spellingShingle E Kadivar
Z Keshavarz
The dynamics of magnetic nanoparticle motion in a straight microvessel
Iranian Journal of Physics Research
microvessel
cylindrical magnet
magnetic nanoparticle
trajectory of particle
magnetic susceptibility
title The dynamics of magnetic nanoparticle motion in a straight microvessel
title_full The dynamics of magnetic nanoparticle motion in a straight microvessel
title_fullStr The dynamics of magnetic nanoparticle motion in a straight microvessel
title_full_unstemmed The dynamics of magnetic nanoparticle motion in a straight microvessel
title_short The dynamics of magnetic nanoparticle motion in a straight microvessel
title_sort dynamics of magnetic nanoparticle motion in a straight microvessel
topic microvessel
cylindrical magnet
magnetic nanoparticle
trajectory of particle
magnetic susceptibility
url http://ijpr.iut.ac.ir/article_1736_09fb822a190ec74890018b76a411412b.pdf
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