A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE
This paper attempts to study a ferrofluid lubrication based rough sine film slider bearing with assorted porous structure using a numerical approach. The fluid flow of the system is regulated by the Neuringer-Rosensweig model. The impact of the transverse surface roughness of the system has been der...
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doaj-7252f5f059fe40b4bf4e0188c4b4a9092020-11-25T00:07:00ZengCTU Central LibraryActa Polytechnica1210-27091805-23632019-04-0159214415210.14311/AP.2019.59.01444459A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTUREMohmmadraiyan M. Munshi0Ashok R. Patel1Gunamani B. Deheri2ALPHA COLLEGE OF ENGINEERING AND TECHNOLOGY, GUJARAT TECHNOLOGICAL UNIVERSITY, AHMEDABAD, GUJARAT, INDIAVishwakarma Government Engineering College, Gujarat Technological University, Ahmedabad, Gujarat, 382424, IndiaDepartment of Mathematics, Sardar Patel University, Vallabh Vidhyanagar, Gujarat, 388120, IndiaThis paper attempts to study a ferrofluid lubrication based rough sine film slider bearing with assorted porous structure using a numerical approach. The fluid flow of the system is regulated by the Neuringer-Rosensweig model. The impact of the transverse surface roughness of the system has been derived using the Christensen and Tonder model. The corresponding Reynolds’ equation has been used to calculate the pressure distribution which, in turn, has been the key to formulate the load carrying capacity equation. A graphical representation is made to demonstrate the calculated value of the load carrying capacity which is a dimensionless unit. The numbers thus derived have been used to prove that ferrofluid lubrication aids the load carrying capacity. The study suggests that the positive impact created by magnetization in the case of negatively skewed roughness helps to partially nullify the negative impact of the transverse roughness. Further investigation implies that when the Kozeny-Carman’s model is used, the overall performance is enhanced. The Kozeny-Carman’s model is a form of an empirical equation used to calculate permeability that is dependent on various parameters like pore shape, turtuosity, specific surface area and porosity. The success of the model can be accredited to its simplicity and efficiency to describe measured permeability values. The obtained equation was used to predict the permeability of fibre mat systems and of vesicular rocks.https://ojs.cvut.cz/ojs/index.php/ap/article/view/4976Porous StructureRoughnessFerrofluidload carrying capacity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mohmmadraiyan M. Munshi Ashok R. Patel Gunamani B. Deheri |
spellingShingle |
Mohmmadraiyan M. Munshi Ashok R. Patel Gunamani B. Deheri A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE Acta Polytechnica Porous Structure Roughness Ferrofluid load carrying capacity |
author_facet |
Mohmmadraiyan M. Munshi Ashok R. Patel Gunamani B. Deheri |
author_sort |
Mohmmadraiyan M. Munshi |
title |
A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE |
title_short |
A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE |
title_full |
A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE |
title_fullStr |
A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE |
title_full_unstemmed |
A STUDY OF FERROFLUID LUBRICATION BASED ROUGH SINE FILM SLIDER BEARING WITH ASSORTED POROUS STRUCTURE |
title_sort |
study of ferrofluid lubrication based rough sine film slider bearing with assorted porous structure |
publisher |
CTU Central Library |
series |
Acta Polytechnica |
issn |
1210-2709 1805-2363 |
publishDate |
2019-04-01 |
description |
This paper attempts to study a ferrofluid lubrication based rough sine film slider bearing with assorted porous structure using a numerical approach. The fluid flow of the system is regulated by the Neuringer-Rosensweig model. The impact of the transverse surface roughness of the system has been derived using the Christensen and Tonder model. The corresponding Reynolds’ equation has been used to calculate the pressure distribution which, in turn, has been the key to formulate the load carrying capacity equation. A graphical representation is made to demonstrate the calculated value of the load carrying capacity which is a dimensionless unit. The numbers thus derived have been used to prove that ferrofluid lubrication aids the load carrying capacity. The study suggests that the positive impact created by magnetization in the case of negatively skewed roughness helps to partially nullify the negative impact of the transverse roughness. Further investigation implies that when the Kozeny-Carman’s model is used, the overall performance is enhanced. The Kozeny-Carman’s model is a form of an empirical equation used to calculate permeability that is dependent on various parameters like pore shape, turtuosity, specific surface area and porosity. The success of the model can be accredited to its simplicity and efficiency to describe measured permeability values. The obtained equation was used to predict the permeability of fibre mat systems and of vesicular rocks. |
topic |
Porous Structure Roughness Ferrofluid load carrying capacity |
url |
https://ojs.cvut.cz/ojs/index.php/ap/article/view/4976 |
work_keys_str_mv |
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