Parametric study of CNG-DI engine operational parameters by using analytical vehicle model

A parametric study of engine’s influential parameters on compressed natural gas direct injection (CNG-DI) engine’s torque was performed by using a dynamic, analytical model of the CNG-DI vehicle. The objective of the study is to analyze the effect of the selected six parameters on the engine’s total...

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Main Authors: Mohd Fadzil, Abdul Rahim, A. A., Jaafar, R., Mamat, Zahari, Taha
Format: Conference or Workshop Item
Language:English
English
Published: Springer, Singapore 2020
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/27100/1/9.%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf
http://umpir.ump.edu.my/id/eprint/27100/2/9.1%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf
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author Mohd Fadzil, Abdul Rahim
A. A., Jaafar
R., Mamat
Zahari, Taha
author_facet Mohd Fadzil, Abdul Rahim
A. A., Jaafar
R., Mamat
Zahari, Taha
author_sort Mohd Fadzil, Abdul Rahim
collection UMP
description A parametric study of engine’s influential parameters on compressed natural gas direct injection (CNG-DI) engine’s torque was performed by using a dynamic, analytical model of the CNG-DI vehicle. The objective of the study is to analyze the effect of the selected six parameters on the engine’s total brake torque. The simulations were carried out to mimic the speed-sweep test procedure of the vehicle on a chassis dynamometer. Based on the actual test setup, a ramp input is provided on the power pedal and the vehicle is allowed to accelerate under the influence of dynamometer inertia load only. Based on the results, the most influential parameter on the maximum engine torque is the injection pressure. The maximum predicted engine mean brake torque at 60 bar injection pressure is about 120 Nm. The second influential parameter is the injection duration, where the maximum predicted engine brake torque is about 100 Nm. Both parameters are related to the controlling amount of the fuel-injected, which affected the amount of energy released into the cylinder. The third influential parameter is the ignition timing, where the maximum pressure predicted is closed to 70 bar. It can be concluded that the magnitude of brake torque is sensitive to the amount of fuel supplied for combustion. This comprehensive model is suitable for parametric analysis regardless of the expensive computing time.
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spelling UMPir271002023-07-10T07:26:50Z http://umpir.ump.edu.my/id/eprint/27100/ Parametric study of CNG-DI engine operational parameters by using analytical vehicle model Mohd Fadzil, Abdul Rahim A. A., Jaafar R., Mamat Zahari, Taha TJ Mechanical engineering and machinery TS Manufactures A parametric study of engine’s influential parameters on compressed natural gas direct injection (CNG-DI) engine’s torque was performed by using a dynamic, analytical model of the CNG-DI vehicle. The objective of the study is to analyze the effect of the selected six parameters on the engine’s total brake torque. The simulations were carried out to mimic the speed-sweep test procedure of the vehicle on a chassis dynamometer. Based on the actual test setup, a ramp input is provided on the power pedal and the vehicle is allowed to accelerate under the influence of dynamometer inertia load only. Based on the results, the most influential parameter on the maximum engine torque is the injection pressure. The maximum predicted engine mean brake torque at 60 bar injection pressure is about 120 Nm. The second influential parameter is the injection duration, where the maximum predicted engine brake torque is about 100 Nm. Both parameters are related to the controlling amount of the fuel-injected, which affected the amount of energy released into the cylinder. The third influential parameter is the ignition timing, where the maximum pressure predicted is closed to 70 bar. It can be concluded that the magnitude of brake torque is sensitive to the amount of fuel supplied for combustion. This comprehensive model is suitable for parametric analysis regardless of the expensive computing time. Springer, Singapore 2020 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/27100/1/9.%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf pdf en http://umpir.ump.edu.my/id/eprint/27100/2/9.1%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf Mohd Fadzil, Abdul Rahim and A. A., Jaafar and R., Mamat and Zahari, Taha (2020) Parametric study of CNG-DI engine operational parameters by using analytical vehicle model. In: iMEC-APCOMS 2019: Proceedings of the 4th International Manufacturing Engineering Conference and The 5th Asia Pacific Conference on Manufacturing Systems , 21-22 August 2019 , Putrajaya, Malaysia. pp. 611-616.. ISBN 978-981-15-0950-6 https://doi.org/10.1007/978-981-15-0950-6_93
spellingShingle TJ Mechanical engineering and machinery
TS Manufactures
Mohd Fadzil, Abdul Rahim
A. A., Jaafar
R., Mamat
Zahari, Taha
Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title_full Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title_fullStr Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title_full_unstemmed Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title_short Parametric study of CNG-DI engine operational parameters by using analytical vehicle model
title_sort parametric study of cng di engine operational parameters by using analytical vehicle model
topic TJ Mechanical engineering and machinery
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/27100/1/9.%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf
http://umpir.ump.edu.my/id/eprint/27100/2/9.1%20Parametric%20study%20of%20CNG-DI%20engine%20operational%20parameters.pdf
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