Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates

The influence of the slip factor on the MHD 2-liquid heat transfer flow of ionized gases within a channel between two non-conducting plates with Hall currents is investigated theoretically. Slip conditions were used to obtain solutions for the velocity and temperature fields, as well as the heat tra...

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Main Authors: T. LINGA RAJU, P. SATISH
Format: Article
Language:English
Published: University of Zielona Góra 2023-09-01
Series:International Journal of Applied Mechanics and Engineering
Subjects:
Online Access:https://www.ijame-poland.com/Slip-regime-MHD-2-liquid-plasma-heat-transfer-flow-with-hall-currents-between-parallel,172898,0,2.html
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author T. LINGA RAJU
P. SATISH
author_facet T. LINGA RAJU
P. SATISH
author_sort T. LINGA RAJU
collection DOAJ
description The influence of the slip factor on the MHD 2-liquid heat transfer flow of ionized gases within a channel between two non-conducting plates with Hall currents is investigated theoretically. Slip conditions were used to obtain solutions for the velocity and temperature fields, as well as the heat transfer rates. The flow characteristics of the two liquids are studied for estimates of the leading parameters, for instance the magnetic parameter, Hall and slip factors, viscosity, density, height, electrical conductivity and the thermal conductivity ratios. It was observed that an upsurge in temperature in the two zones is caused by the thermal conductivity proportion. The rate of heat transfer coefficient diminishes up to a certain point, after that it starts to increase as the magnetic and Hall parameters increase
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publisher University of Zielona Góra
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spelling doaj.art-1ae9f27e3517461e9675e6e03371b7b92023-09-29T07:53:30ZengUniversity of Zielona GóraInternational Journal of Applied Mechanics and Engineering1734-44922353-90032023-09-01283658510.59441/ijame/172898172898Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel platesT. LINGA RAJU0P. SATISHDepartment of Engineering Mathematics, Andhra University College of Engineering, Andhra University, Visakhapatnam- 530003The influence of the slip factor on the MHD 2-liquid heat transfer flow of ionized gases within a channel between two non-conducting plates with Hall currents is investigated theoretically. Slip conditions were used to obtain solutions for the velocity and temperature fields, as well as the heat transfer rates. The flow characteristics of the two liquids are studied for estimates of the leading parameters, for instance the magnetic parameter, Hall and slip factors, viscosity, density, height, electrical conductivity and the thermal conductivity ratios. It was observed that an upsurge in temperature in the two zones is caused by the thermal conductivity proportion. The rate of heat transfer coefficient diminishes up to a certain point, after that it starts to increase as the magnetic and Hall parameters increasehttps://www.ijame-poland.com/Slip-regime-MHD-2-liquid-plasma-heat-transfer-flow-with-hall-currents-between-parallel,172898,0,2.htmlimmiscible slip flowelectric and magnetic fieldshall effectplasmaheat transfer
spellingShingle T. LINGA RAJU
P. SATISH
Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
International Journal of Applied Mechanics and Engineering
immiscible slip flow
electric and magnetic fields
hall effect
plasma
heat transfer
title Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
title_full Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
title_fullStr Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
title_full_unstemmed Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
title_short Slip regime MHD 2-liquid plasma heat transfer flow with hall currents between parallel plates
title_sort slip regime mhd 2 liquid plasma heat transfer flow with hall currents between parallel plates
topic immiscible slip flow
electric and magnetic fields
hall effect
plasma
heat transfer
url https://www.ijame-poland.com/Slip-regime-MHD-2-liquid-plasma-heat-transfer-flow-with-hall-currents-between-parallel,172898,0,2.html
work_keys_str_mv AT tlingaraju slipregimemhd2liquidplasmaheattransferflowwithhallcurrentsbetweenparallelplates
AT psatish slipregimemhd2liquidplasmaheattransferflowwithhallcurrentsbetweenparallelplates