SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry
There is currently no unified theory for describing ferrofluid flow under a rotating magnetic field. Spin diffusion theory has been broadly studied. But it has been limited to scenarios of magnetic fields with low intensity, due to the approximations required for the analytical solution. SpinUpFlowD...
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doaj-b7fac097b2524a3c9b4552c58703f3592020-12-19T05:08:27ZengElsevierSoftwareX2352-71102020-07-0112100567SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometryCristian Jimenez0Iván Amaya1Rodrigo Correa2Universidad Industrial de Santander, Escuela de Ingenierías Eléctrica, Electrónica y de Telecomunicaciones, Cra. 27 Calle 9, Bucaramanga, 680002, Colombia; Corresponding author.Tecnologico de Monterrey, School of Engineering and Sciences, Av. Eugenio Garza Sada, 2501 Sur, MexicoUniversidad Industrial de Santander, Escuela de Ingenierías Eléctrica, Electrónica y de Telecomunicaciones, Cra. 27 Calle 9, Bucaramanga, 680002, ColombiaThere is currently no unified theory for describing ferrofluid flow under a rotating magnetic field. Spin diffusion theory has been broadly studied. But it has been limited to scenarios of magnetic fields with low intensity, due to the approximations required for the analytical solution. SpinUpFlowDescriptor is a MATLAB software that solves the ferrohydrodynamic problem, using finite difference equations. Our software does not require simplifications that limit its validity. So, it can be used for different field intensities, as shown in the experiments. Moreover, our data depict a saturation phenomenon for the velocity profiles, previously unreported for the spin-up geometry.http://www.sciencedirect.com/science/article/pii/S2352711020302636Spin diffusion theoryFerrofluidRotating magnetic fieldsSpin-up geometry |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Cristian Jimenez Iván Amaya Rodrigo Correa |
spellingShingle |
Cristian Jimenez Iván Amaya Rodrigo Correa SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry SoftwareX Spin diffusion theory Ferrofluid Rotating magnetic fields Spin-up geometry |
author_facet |
Cristian Jimenez Iván Amaya Rodrigo Correa |
author_sort |
Cristian Jimenez |
title |
SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
title_short |
SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
title_full |
SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
title_fullStr |
SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
title_full_unstemmed |
SpinUpFlowDescriptor: A MATLAB toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
title_sort |
spinupflowdescriptor: a matlab toolbox for ferrofluids materials under moderate and high amplitude and frequency of magnetic rotating fields in a spin-up geometry |
publisher |
Elsevier |
series |
SoftwareX |
issn |
2352-7110 |
publishDate |
2020-07-01 |
description |
There is currently no unified theory for describing ferrofluid flow under a rotating magnetic field. Spin diffusion theory has been broadly studied. But it has been limited to scenarios of magnetic fields with low intensity, due to the approximations required for the analytical solution. SpinUpFlowDescriptor is a MATLAB software that solves the ferrohydrodynamic problem, using finite difference equations. Our software does not require simplifications that limit its validity. So, it can be used for different field intensities, as shown in the experiments. Moreover, our data depict a saturation phenomenon for the velocity profiles, previously unreported for the spin-up geometry. |
topic |
Spin diffusion theory Ferrofluid Rotating magnetic fields Spin-up geometry |
url |
http://www.sciencedirect.com/science/article/pii/S2352711020302636 |
work_keys_str_mv |
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