The analysis of grid independence study in continuous disperse of MQL delivery system

A sustainable cutting method of Minimum Quantity Lubricant (MQL) was introduced to promote lubrication effect and improve machinability. However, its performances are very dependent on the effectiveness of its mist to penetrate deep into the cutting zone. Optimizing the MQL system requires massive e...

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Main Authors: Z., Zulkifli, N. H., Abdul Halim, Z. H., Solihin, J., Saedon, A. A., Ahmad, A. H., Abdullah, N., Abdul Raof, Musfirah, Abdul Hadi
格式: Article
語言:English
出版: Faculty Mechanical Engineering, UMP 2023
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在線閱讀:http://umpir.ump.edu.my/id/eprint/38991/1/The%20analysis%20of%20grid%20independence%20study%20in%20continuous%20disperse%20of%20MQL.pdf
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author Z., Zulkifli
N. H., Abdul Halim
Z. H., Solihin
J., Saedon
A. A., Ahmad
A. H., Abdullah
N., Abdul Raof
Musfirah, Abdul Hadi
author_facet Z., Zulkifli
N. H., Abdul Halim
Z. H., Solihin
J., Saedon
A. A., Ahmad
A. H., Abdullah
N., Abdul Raof
Musfirah, Abdul Hadi
author_sort Z., Zulkifli
collection UMP
description A sustainable cutting method of Minimum Quantity Lubricant (MQL) was introduced to promote lubrication effect and improve machinability. However, its performances are very dependent on the effectiveness of its mist to penetrate deep into the cutting zone. Optimizing the MQL system requires massive experimental work that increases cost and time. Therefore, this study conducts Computational Fluid Dynamic (CFD) analysis using ANSYS Fluent and focuses on the grid independence study in dispersed-continuous phase of MQL delivery system. The main aim is to identify the best mesh model that influences the accuracy of the CFD model. The analysis proposed two different unstructured grid cell elements of quadrilateral and triangular that were only applicable for 2-dimensional fluid flow in CFD. The unstructured grid was controlled with three different mesh quality factors such as Relevance Center, Smoothing, and Span Angle Center at coarse /low, medium, and fine /high. The results showed that the best mesh quality for quadrilateral was at 60,000 nodes number and coarse mesh, whereas the triangular was at 90,000 nodes number and coarse mesh. Both combinations resulted the most consistent and reliable result when compared with past studies. However, this study decided to choose quadrilateral cell element with 60,000 nodes number and coarse mesh as it is considered to be sufficient to provide accurate and reliable result as well as practical in terms of computational time for the MQL model in CFD analysis.
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spelling UMPir389912023-10-24T01:41:02Z http://umpir.ump.edu.my/id/eprint/38991/ The analysis of grid independence study in continuous disperse of MQL delivery system Z., Zulkifli N. H., Abdul Halim Z. H., Solihin J., Saedon A. A., Ahmad A. H., Abdullah N., Abdul Raof Musfirah, Abdul Hadi TJ Mechanical engineering and machinery TS Manufactures A sustainable cutting method of Minimum Quantity Lubricant (MQL) was introduced to promote lubrication effect and improve machinability. However, its performances are very dependent on the effectiveness of its mist to penetrate deep into the cutting zone. Optimizing the MQL system requires massive experimental work that increases cost and time. Therefore, this study conducts Computational Fluid Dynamic (CFD) analysis using ANSYS Fluent and focuses on the grid independence study in dispersed-continuous phase of MQL delivery system. The main aim is to identify the best mesh model that influences the accuracy of the CFD model. The analysis proposed two different unstructured grid cell elements of quadrilateral and triangular that were only applicable for 2-dimensional fluid flow in CFD. The unstructured grid was controlled with three different mesh quality factors such as Relevance Center, Smoothing, and Span Angle Center at coarse /low, medium, and fine /high. The results showed that the best mesh quality for quadrilateral was at 60,000 nodes number and coarse mesh, whereas the triangular was at 90,000 nodes number and coarse mesh. Both combinations resulted the most consistent and reliable result when compared with past studies. However, this study decided to choose quadrilateral cell element with 60,000 nodes number and coarse mesh as it is considered to be sufficient to provide accurate and reliable result as well as practical in terms of computational time for the MQL model in CFD analysis. Faculty Mechanical Engineering, UMP 2023-09 Article PeerReviewed pdf en cc_by_nc_4 http://umpir.ump.edu.my/id/eprint/38991/1/The%20analysis%20of%20grid%20independence%20study%20in%20continuous%20disperse%20of%20MQL.pdf Z., Zulkifli and N. H., Abdul Halim and Z. H., Solihin and J., Saedon and A. A., Ahmad and A. H., Abdullah and N., Abdul Raof and Musfirah, Abdul Hadi (2023) The analysis of grid independence study in continuous disperse of MQL delivery system. Journal of Mechanical Engineering and Sciences (JMES), 17 (3). 9586 -9596. ISSN 2289-4659 (print); 2231-8380 (online). (Published) https://doi.org/10.15282/jmes.17.3.2023.5.0759 https://doi.org/10.15282/jmes.17.3.2023.5.0759
spellingShingle TJ Mechanical engineering and machinery
TS Manufactures
Z., Zulkifli
N. H., Abdul Halim
Z. H., Solihin
J., Saedon
A. A., Ahmad
A. H., Abdullah
N., Abdul Raof
Musfirah, Abdul Hadi
The analysis of grid independence study in continuous disperse of MQL delivery system
title The analysis of grid independence study in continuous disperse of MQL delivery system
title_full The analysis of grid independence study in continuous disperse of MQL delivery system
title_fullStr The analysis of grid independence study in continuous disperse of MQL delivery system
title_full_unstemmed The analysis of grid independence study in continuous disperse of MQL delivery system
title_short The analysis of grid independence study in continuous disperse of MQL delivery system
title_sort analysis of grid independence study in continuous disperse of mql delivery system
topic TJ Mechanical engineering and machinery
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/38991/1/The%20analysis%20of%20grid%20independence%20study%20in%20continuous%20disperse%20of%20MQL.pdf
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