Comparison of Soot Particle Movement based on Crank Angle

In a diesel engine, soot was produced due to incomplete fuel combustion in a combustion chamber. Some of this soot sticks to the cylinder wall and interferes with lubricant oil. This soot causes the lubricant oil to contaminate and this increases its viscosity. Contamination of lubricant oil is one...

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Main Authors: Hanafi, M.H.M, Wan Mahmood, W.M.F, Abdollah, Mohd Fadzli bin, Saleman, Abdul Rafeq, Nor, N.F.M, Zulfattah, Z. M., Shamsudin, S.A, Ibrahim, A.
Format: Article
Language:English
Published: Elsevier 2013
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Online Access:http://eprints.utem.edu.my/id/eprint/12155/1/Hanafi_et_al._-_2013_-_Comparison_of_Soot_Particle_Movement_based_on_Crank_Angle%282%29.pdf
http://eprints.utem.edu.my/id/eprint/12155/
http://dx.doi.org/10.1016/j.proeng.2013.12.175
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spelling my.utem.eprints.121552015-05-28T04:22:48Z http://eprints.utem.edu.my/id/eprint/12155/ Comparison of Soot Particle Movement based on Crank Angle Hanafi, M.H.M Wan Mahmood, W.M.F Abdollah, Mohd Fadzli bin Saleman, Abdul Rafeq Nor, N.F.M Zulfattah, Z. M. Shamsudin, S.A Ibrahim, A. TJ Mechanical engineering and machinery In a diesel engine, soot was produced due to incomplete fuel combustion in a combustion chamber. Some of this soot sticks to the cylinder wall and interferes with lubricant oil. This soot causes the lubricant oil to contaminate and this increases its viscosity. Contamination of lubricant oil is one of the major causes of engine wear. Therefore, the focus of this study is on soot movement in diesel engine that is the initial step to avoid contamination of lubricant oil. This work uses the data of the formation of soot particles from Kiva-3 v obtained from previous investigation and then simulated it by a Matlab routine. Kiva-3 v produced velocity vectors of the soot, fuel, temperature, pressure and others. Matlab routine uses trilinear interpolation and fourth order Runge Kutta method in order to calculate soot movement in a combustion chamber. In addition, the influence of drag force is considered in the calculation to achieve a higher accuracy. The objective of this study is to compare soot particle movement between 8° ATDC and 18° ATDC. Results show that 8° ATDC has a high risk to contaminate lubrication oil in certain location compare to 18° ATDC. Elsevier 2013-12-31 Article PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/12155/1/Hanafi_et_al._-_2013_-_Comparison_of_Soot_Particle_Movement_based_on_Crank_Angle%282%29.pdf Hanafi, M.H.M and Wan Mahmood, W.M.F and Abdollah, Mohd Fadzli bin and Saleman, Abdul Rafeq and Nor, N.F.M and Zulfattah, Z. M. and Shamsudin, S.A and Ibrahim, A. (2013) Comparison of Soot Particle Movement based on Crank Angle. Procedia Engineering , 68. pp. 245-250. ISSN 1877-7058 http://dx.doi.org/10.1016/j.proeng.2013.12.175
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Hanafi, M.H.M
Wan Mahmood, W.M.F
Abdollah, Mohd Fadzli bin
Saleman, Abdul Rafeq
Nor, N.F.M
Zulfattah, Z. M.
Shamsudin, S.A
Ibrahim, A.
Comparison of Soot Particle Movement based on Crank Angle
description In a diesel engine, soot was produced due to incomplete fuel combustion in a combustion chamber. Some of this soot sticks to the cylinder wall and interferes with lubricant oil. This soot causes the lubricant oil to contaminate and this increases its viscosity. Contamination of lubricant oil is one of the major causes of engine wear. Therefore, the focus of this study is on soot movement in diesel engine that is the initial step to avoid contamination of lubricant oil. This work uses the data of the formation of soot particles from Kiva-3 v obtained from previous investigation and then simulated it by a Matlab routine. Kiva-3 v produced velocity vectors of the soot, fuel, temperature, pressure and others. Matlab routine uses trilinear interpolation and fourth order Runge Kutta method in order to calculate soot movement in a combustion chamber. In addition, the influence of drag force is considered in the calculation to achieve a higher accuracy. The objective of this study is to compare soot particle movement between 8° ATDC and 18° ATDC. Results show that 8° ATDC has a high risk to contaminate lubrication oil in certain location compare to 18° ATDC.
format Article
author Hanafi, M.H.M
Wan Mahmood, W.M.F
Abdollah, Mohd Fadzli bin
Saleman, Abdul Rafeq
Nor, N.F.M
Zulfattah, Z. M.
Shamsudin, S.A
Ibrahim, A.
author_facet Hanafi, M.H.M
Wan Mahmood, W.M.F
Abdollah, Mohd Fadzli bin
Saleman, Abdul Rafeq
Nor, N.F.M
Zulfattah, Z. M.
Shamsudin, S.A
Ibrahim, A.
author_sort Hanafi, M.H.M
title Comparison of Soot Particle Movement based on Crank Angle
title_short Comparison of Soot Particle Movement based on Crank Angle
title_full Comparison of Soot Particle Movement based on Crank Angle
title_fullStr Comparison of Soot Particle Movement based on Crank Angle
title_full_unstemmed Comparison of Soot Particle Movement based on Crank Angle
title_sort comparison of soot particle movement based on crank angle
publisher Elsevier
publishDate 2013
url http://eprints.utem.edu.my/id/eprint/12155/1/Hanafi_et_al._-_2013_-_Comparison_of_Soot_Particle_Movement_based_on_Crank_Angle%282%29.pdf
http://eprints.utem.edu.my/id/eprint/12155/
http://dx.doi.org/10.1016/j.proeng.2013.12.175
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score 13.160551