Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions

Thermal effects have been investigated in a porous inclined slider bearing together with the slip boundary conditions. Using Jenkins model, the governing system of equations pertaining to the flow is solved analytically to yield the various bearing characteristics. The expressions for mean temperatu...

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Main Authors: Ram Paras, Kumar Anil
Format: Article
Language:English
Published: De Gruyter 2019-01-01
Series:Nonlinear Engineering
Subjects:
Online Access:https://doi.org/10.1515/nleng-2018-0014
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author Ram Paras
Kumar Anil
author_facet Ram Paras
Kumar Anil
author_sort Ram Paras
collection DOAJ
description Thermal effects have been investigated in a porous inclined slider bearing together with the slip boundary conditions. Using Jenkins model, the governing system of equations pertaining to the flow is solved analytically to yield the various bearing characteristics. The expressions for mean temperature, pressure and the lifting force (load carrying capacity) have been derived as a function of slip, magnetic, permeability, material and thermal parameters. Furthermore, the term pertaining to the co-rotational derivative of magnetization is expected to influence the lifting force significantly. Therefore its effect on the bearing characteristics is also considered. The lubricant is assumed to be incompressible, and its viscosity varies exponentially with the temperature. The behavior of mean temperature with other bearing characteristics across the fluid film thickness has also been investigated. The variations in the lifting force and mean temperature w.r.t. various bearing parameters have been analyzed graphically.
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spelling doaj.art-baaa4fd066d84c5491c031814973a9a92022-12-21T22:39:35ZengDe GruyterNonlinear Engineering2192-80102192-80292019-01-018120621510.1515/nleng-2018-0014nleng-2018-0014Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip ConditionsRam Paras0Kumar Anil1Department of Mathematics, National Institute of Technology, Kurukshetra, Haryana, IndiaDepartment of Mathematics, National Institute of Technology, Kurukshetra, Haryana, IndiaThermal effects have been investigated in a porous inclined slider bearing together with the slip boundary conditions. Using Jenkins model, the governing system of equations pertaining to the flow is solved analytically to yield the various bearing characteristics. The expressions for mean temperature, pressure and the lifting force (load carrying capacity) have been derived as a function of slip, magnetic, permeability, material and thermal parameters. Furthermore, the term pertaining to the co-rotational derivative of magnetization is expected to influence the lifting force significantly. Therefore its effect on the bearing characteristics is also considered. The lubricant is assumed to be incompressible, and its viscosity varies exponentially with the temperature. The behavior of mean temperature with other bearing characteristics across the fluid film thickness has also been investigated. The variations in the lifting force and mean temperature w.r.t. various bearing parameters have been analyzed graphically.https://doi.org/10.1515/nleng-2018-0014jenkins modelmagnetic fluidporous inclined slider bearingslip velocitymean temperaturethermal boundary layer
spellingShingle Ram Paras
Kumar Anil
Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
Nonlinear Engineering
jenkins model
magnetic fluid
porous inclined slider bearing
slip velocity
mean temperature
thermal boundary layer
title Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
title_full Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
title_fullStr Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
title_full_unstemmed Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
title_short Analysis of Heat Transfer and Lifting Force in a Ferro-Nanofluid Based Porous Inclined Slider Bearing with Slip Conditions
title_sort analysis of heat transfer and lifting force in a ferro nanofluid based porous inclined slider bearing with slip conditions
topic jenkins model
magnetic fluid
porous inclined slider bearing
slip velocity
mean temperature
thermal boundary layer
url https://doi.org/10.1515/nleng-2018-0014
work_keys_str_mv AT ramparas analysisofheattransferandliftingforceinaferronanofluidbasedporousinclinedsliderbearingwithslipconditions
AT kumaranil analysisofheattransferandliftingforceinaferronanofluidbasedporousinclinedsliderbearingwithslipconditions