Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects

This study discusses Hall and ion-slip effects in 3D heat transfer in micropolar plasma. The solution of modeled hydrodynamic boundary value problems are computed by Galerkin finite element method (GFEM). Simulations for velocity, angular velocity and temperature are carried out. Momentum and therma...

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Main Authors: M. Nawaz, Shafia Rana, Imran Haider Qureshi, T. Hayat
Format: Article
Language:English
Published: AIP Publishing LLC 2018-10-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5050670
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author M. Nawaz
Shafia Rana
Imran Haider Qureshi
T. Hayat
author_facet M. Nawaz
Shafia Rana
Imran Haider Qureshi
T. Hayat
author_sort M. Nawaz
collection DOAJ
description This study discusses Hall and ion-slip effects in 3D heat transfer in micropolar plasma. The solution of modeled hydrodynamic boundary value problems are computed by Galerkin finite element method (GFEM). Simulations for velocity, angular velocity and temperature are carried out. Momentum and thermal boundary thickness are greatly affected by Hall and ion currents. Magnitude of angular velocity has increasing behavior when micropolar parameter increased. In view of the results obtained from the present investigation, it is recommended to use micro-polar plasma like blood and plasma polymers if Joule heating dissipations are required. Micro-rotation due to the solid structure in micropolar increases when vortex viscosity is increased.
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spelling doaj.art-73b654bfeaa443728481b165a52c892b2022-12-22T00:52:25ZengAIP Publishing LLCAIP Advances2158-32262018-10-01810105109105109-1710.1063/1.5050670069809ADVThree-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effectsM. Nawaz0Shafia Rana1Imran Haider Qureshi2T. Hayat3Department of Applied Mathematics & Statistics, Institute of Space Technology, Islamabad 44000, PakistanDepartment of Applied Mathematics & Statistics, Institute of Space Technology, Islamabad 44000, PakistanDepartment of Applied Mathematics & Statistics, Institute of Space Technology, Islamabad 44000, PakistanDepartment of Mathematics, Quaid-I-Azam University, Islamabad 44000, PakistanThis study discusses Hall and ion-slip effects in 3D heat transfer in micropolar plasma. The solution of modeled hydrodynamic boundary value problems are computed by Galerkin finite element method (GFEM). Simulations for velocity, angular velocity and temperature are carried out. Momentum and thermal boundary thickness are greatly affected by Hall and ion currents. Magnitude of angular velocity has increasing behavior when micropolar parameter increased. In view of the results obtained from the present investigation, it is recommended to use micro-polar plasma like blood and plasma polymers if Joule heating dissipations are required. Micro-rotation due to the solid structure in micropolar increases when vortex viscosity is increased.http://dx.doi.org/10.1063/1.5050670
spellingShingle M. Nawaz
Shafia Rana
Imran Haider Qureshi
T. Hayat
Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
AIP Advances
title Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
title_full Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
title_fullStr Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
title_full_unstemmed Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
title_short Three-dimensional heat transfer in the mixture of nanoparticles and micropolar MHD plasma with Hall and ion slip effects
title_sort three dimensional heat transfer in the mixture of nanoparticles and micropolar mhd plasma with hall and ion slip effects
url http://dx.doi.org/10.1063/1.5050670
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