Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium

An electrically conducting nanofluid saturated with a uniform porous media has been tested to determine how rotation affects thermal convection. Utilizing the Oldroydian model, which incorporates the specific effects of the electric field, Brownian motion, thermophoresis, and rheological factors fo...

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Main Authors: Pushap Lata Sharma, Mohini Kapalta, Ashok Kumar, Deepak Bains, Sumit Gupta, Pankaj Thakur
Format: Article
Language:English
Published: Nigerian Society of Physical Sciences 2023-03-01
Series:Journal of Nigerian Society of Physical Sciences
Subjects:
Online Access:https://journal.nsps.org.ng/index.php/jnsps/article/view/1231
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author Pushap Lata Sharma
Mohini Kapalta
Ashok Kumar
Deepak Bains
Sumit Gupta
Pankaj Thakur
author_facet Pushap Lata Sharma
Mohini Kapalta
Ashok Kumar
Deepak Bains
Sumit Gupta
Pankaj Thakur
author_sort Pushap Lata Sharma
collection DOAJ
description An electrically conducting nanofluid saturated with a uniform porous media has been tested to determine how rotation affects thermal convection. Utilizing the Oldroydian model, which incorporates the specific effects of the electric field, Brownian motion, thermophoresis, and rheological factors for the distribution of nanoparticles that are top- and bottom-heavy, one may use linear stability theory to ensure stability. Analysis and graphical representation of the effects of the AC electric field Rayleigh number, Taylor number, Lewis number, modified diffusivity ratio, concentration Rayleigh number, and medium porosity are provided for both bottom-heavy and top-heavy distribution.
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spelling doaj.art-d902e9b41f8b4c3c8caa2caea25b255d2023-03-03T04:32:37ZengNigerian Society of Physical SciencesJournal of Nigerian Society of Physical Sciences2714-28172714-47042023-03-015210.46481/jnsps.2023.1231Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous mediumPushap Lata Sharma0Mohini Kapalta1Ashok Kumar2Deepak Bains3Sumit Gupta4Pankaj Thakur5Department of Mathematics & Statistics, Himachal Pradesh University, Summer Hill, Shimla, IndiaDepartment of Mathematics & Statistics, Himachal Pradesh University, Summer Hill, Shimla, IndiaDepartment of Mathematics & Statistics, Himachal Pradesh University, Summer Hill, Shimla, IndiaDepartment of Mathematics & Statistics, Himachal Pradesh University, Summer Hill, Shimla, IndiaRajiv Gandhi Govt college Chaura Maidan, Shimla, IndiaFaculty of Science and Technology, ICFAI University, Baddi, Solan, India An electrically conducting nanofluid saturated with a uniform porous media has been tested to determine how rotation affects thermal convection. Utilizing the Oldroydian model, which incorporates the specific effects of the electric field, Brownian motion, thermophoresis, and rheological factors for the distribution of nanoparticles that are top- and bottom-heavy, one may use linear stability theory to ensure stability. Analysis and graphical representation of the effects of the AC electric field Rayleigh number, Taylor number, Lewis number, modified diffusivity ratio, concentration Rayleigh number, and medium porosity are provided for both bottom-heavy and top-heavy distribution. https://journal.nsps.org.ng/index.php/jnsps/article/view/1231convection, dielectric, electric field, nanofluid, Oldroydian, porous medium, rotation
spellingShingle Pushap Lata Sharma
Mohini Kapalta
Ashok Kumar
Deepak Bains
Sumit Gupta
Pankaj Thakur
Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
Journal of Nigerian Society of Physical Sciences
convection, dielectric, electric field, nanofluid, Oldroydian, porous medium, rotation
title Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
title_full Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
title_fullStr Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
title_full_unstemmed Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
title_short Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
title_sort electrohydro dynamics convection in dielectric rotating oldroydian nanofluid in porous medium
topic convection, dielectric, electric field, nanofluid, Oldroydian, porous medium, rotation
url https://journal.nsps.org.ng/index.php/jnsps/article/view/1231
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AT deepakbains electrohydrodynamicsconvectionindielectricrotatingoldroydiannanofluidinporousmedium
AT sumitgupta electrohydrodynamicsconvectionindielectricrotatingoldroydiannanofluidinporousmedium
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