Design of a four-stroke homogeneous charge compression ignition engine

This research is to study the operation of the four-stroke HCCI engine. The design and analysis works have been performed using computer software which is GT-Power and Solidwork to study on the engine performance simulation work and 3-D modelling on the combustion chamber designed respectively. The...

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Main Authors: Perang, M. R. M., Abdul Latiff, Z., Aziz, A. A., Mokhri, M. A.
Format: Conference or Workshop Item
Published: 2013
Subjects:
Online Access:http://eprints.utm.my/id/eprint/50977/
http://dx.doi.org/10.4028/www.scientific.net/AMM.388.229
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spelling my.utm.509772017-09-17T04:56:04Z http://eprints.utm.my/id/eprint/50977/ Design of a four-stroke homogeneous charge compression ignition engine Perang, M. R. M. Abdul Latiff, Z. Aziz, A. A. Mokhri, M. A. TJ Mechanical engineering and machinery This research is to study the operation of the four-stroke HCCI engine. The design and analysis works have been performed using computer software which is GT-Power and Solidwork to study on the engine performance simulation work and 3-D modelling on the combustion chamber designed respectively. The design is based on 4-cylinder passenger car, 2000 cc and a four-stroke cycle engine. The compression ratio used is 10. The fuel used is ethanol in which the air-fuel ratio (AFR) is 9. The parameters selected have typical range of value based on the previous study and research done. With the use of GT-power, the analysis will consider two parameters which are the cam timing angle and the injection timing angle to get the optimum result for the HCCI engine. The typical angle of cam timing angle is between 2600 – 2700 since this is the moment of the compression cycle of the engine. For the injection timing angles, the angles that will be studied for this project are 50, 00, -50, -100,-150 and -200 relative to Top Dead Centre (TDC). The objective is to obtain the maximum torque and brake power when the engine speed is in between 4000 rpm to 5000 rpm and 6000 rpm to 7000 rpm respectively. Finally, the optimum conditions for the engine to perform better are at 2640 of cam timing angle for the valve and at -50 before TDC for the injection timing angle. The maximum torque and brake power achieved is 37.60 Nm at 4000 rpm and 23.46 kW at 7000 rpm. 2013 Conference or Workshop Item PeerReviewed Perang, M. R. M. and Abdul Latiff, Z. and Aziz, A. A. and Mokhri, M. A. (2013) Design of a four-stroke homogeneous charge compression ignition engine. In: Applied Mechanics And Materials. http://dx.doi.org/10.4028/www.scientific.net/AMM.388.229
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Perang, M. R. M.
Abdul Latiff, Z.
Aziz, A. A.
Mokhri, M. A.
Design of a four-stroke homogeneous charge compression ignition engine
description This research is to study the operation of the four-stroke HCCI engine. The design and analysis works have been performed using computer software which is GT-Power and Solidwork to study on the engine performance simulation work and 3-D modelling on the combustion chamber designed respectively. The design is based on 4-cylinder passenger car, 2000 cc and a four-stroke cycle engine. The compression ratio used is 10. The fuel used is ethanol in which the air-fuel ratio (AFR) is 9. The parameters selected have typical range of value based on the previous study and research done. With the use of GT-power, the analysis will consider two parameters which are the cam timing angle and the injection timing angle to get the optimum result for the HCCI engine. The typical angle of cam timing angle is between 2600 – 2700 since this is the moment of the compression cycle of the engine. For the injection timing angles, the angles that will be studied for this project are 50, 00, -50, -100,-150 and -200 relative to Top Dead Centre (TDC). The objective is to obtain the maximum torque and brake power when the engine speed is in between 4000 rpm to 5000 rpm and 6000 rpm to 7000 rpm respectively. Finally, the optimum conditions for the engine to perform better are at 2640 of cam timing angle for the valve and at -50 before TDC for the injection timing angle. The maximum torque and brake power achieved is 37.60 Nm at 4000 rpm and 23.46 kW at 7000 rpm.
format Conference or Workshop Item
author Perang, M. R. M.
Abdul Latiff, Z.
Aziz, A. A.
Mokhri, M. A.
author_facet Perang, M. R. M.
Abdul Latiff, Z.
Aziz, A. A.
Mokhri, M. A.
author_sort Perang, M. R. M.
title Design of a four-stroke homogeneous charge compression ignition engine
title_short Design of a four-stroke homogeneous charge compression ignition engine
title_full Design of a four-stroke homogeneous charge compression ignition engine
title_fullStr Design of a four-stroke homogeneous charge compression ignition engine
title_full_unstemmed Design of a four-stroke homogeneous charge compression ignition engine
title_sort design of a four-stroke homogeneous charge compression ignition engine
publishDate 2013
url http://eprints.utm.my/id/eprint/50977/
http://dx.doi.org/10.4028/www.scientific.net/AMM.388.229
_version_ 1643652902377488384
score 13.18916