Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field

This paper deals with the theoretical investigation of the effect of Hall currents on the thermal stability of a ferromagnetic fluid heated from below in porous medium. For a fluid layer between two free boundaries, an exact solution is obtained using a linearized stability theory and norma...

Full description

Bibliographic Details
Main Authors: Aggarwal Amrish Kumar, Makhija Suman
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2014-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2014/0354-98361200086A.pdf
id doaj-a5acc43a3f484503b8bcc75c9700a960
record_format Article
spelling doaj-a5acc43a3f484503b8bcc75c9700a9602021-01-02T08:05:56ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362014-01-0118suppl.250351410.2298/TSCI110714086A0354-98361200086AHall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic fieldAggarwal Amrish Kumar0Makhija Suman1Department of Mathematics Jaypee Institute of Information Technology, Noida (UP), INDIADepartment of Mathematics Jaypee Institute of Information Technology, Noida (UP), INDIAThis paper deals with the theoretical investigation of the effect of Hall currents on the thermal stability of a ferromagnetic fluid heated from below in porous medium. For a fluid layer between two free boundaries, an exact solution is obtained using a linearized stability theory and normal mode analysis. A dispersion relation governing the effects of medium permeability, a uniform horizontal magnetic field, magnetization and Hall currents is derived. For the case of stationary convection, it is found that the magnetic field and magnetization have a stabilizing effect on the system, as such their effect is to postpone the onset of thermal instability whereas Hall currents are found to hasten the onset of thermal instability. The medium permeability hastens the onset of convection under certain conditions. The principle of exchange of stabilities is not valid for the problem under consideration whereas in the absence of Hall currents (hence magnetic field), it is valid under certain conditions.http://www.doiserbia.nb.rs/img/doi/0354-9836/2014/0354-98361200086A.pdfhall currentsthermal stabilityferromagnetic fluidporous medium
collection DOAJ
language English
format Article
sources DOAJ
author Aggarwal Amrish Kumar
Makhija Suman
spellingShingle Aggarwal Amrish Kumar
Makhija Suman
Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
Thermal Science
hall currents
thermal stability
ferromagnetic fluid
porous medium
author_facet Aggarwal Amrish Kumar
Makhija Suman
author_sort Aggarwal Amrish Kumar
title Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
title_short Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
title_full Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
title_fullStr Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
title_full_unstemmed Hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
title_sort hall effect on thermal stability of ferromagnetic fluid in porous medium in the presence of horizontal magnetic field
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2014-01-01
description This paper deals with the theoretical investigation of the effect of Hall currents on the thermal stability of a ferromagnetic fluid heated from below in porous medium. For a fluid layer between two free boundaries, an exact solution is obtained using a linearized stability theory and normal mode analysis. A dispersion relation governing the effects of medium permeability, a uniform horizontal magnetic field, magnetization and Hall currents is derived. For the case of stationary convection, it is found that the magnetic field and magnetization have a stabilizing effect on the system, as such their effect is to postpone the onset of thermal instability whereas Hall currents are found to hasten the onset of thermal instability. The medium permeability hastens the onset of convection under certain conditions. The principle of exchange of stabilities is not valid for the problem under consideration whereas in the absence of Hall currents (hence magnetic field), it is valid under certain conditions.
topic hall currents
thermal stability
ferromagnetic fluid
porous medium
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2014/0354-98361200086A.pdf
work_keys_str_mv AT aggarwalamrishkumar halleffectonthermalstabilityofferromagneticfluidinporousmediuminthepresenceofhorizontalmagneticfield
AT makhijasuman halleffectonthermalstabilityofferromagneticfluidinporousmediuminthepresenceofhorizontalmagneticfield
_version_ 1724357000637186048