Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach

This paper was investigated the transient heat transfer characteristics in exhaust port for hydrogen fueled port injection internal combustion engine (H2ICE). One dimensional gas dynamics was described the flow and heat transfer in the components of the engine model. The engine model is simulated wi...

Full description

Bibliographic Details
Main Authors: M. M., Noor, M. M., Rahman, K., Kadirgama, R. A., Bakar, M. F. A., Rahim
Format: Article
Language:English
Published: 2011
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/2214/
http://umpir.ump.edu.my/id/eprint/2214/2/Heat_Transfer_Characteristics_in_Exhaust_Port_for_Hydrogen_Fueled_Port_Injection_Engine_A_Transient_Approach.pdf
_version_ 1848817002225860608
author M. M., Noor
M. M., Rahman
K., Kadirgama
R. A., Bakar
M. F. A., Rahim
author_facet M. M., Noor
M. M., Rahman
K., Kadirgama
R. A., Bakar
M. F. A., Rahim
author_sort M. M., Noor
building UMP Institutional Repository
collection Online Access
description This paper was investigated the transient heat transfer characteristics in exhaust port for hydrogen fueled port injection internal combustion engine (H2ICE). One dimensional gas dynamics was described the flow and heat transfer in the components of the engine model. The engine model is simulated with variable engine speed and air fuel ratio (AFR). Engine speed varied from 2000 rpm to 5000 rpm with increment equal to 1000 rpm and AFR was varies from stoichiometric to lean limit. The effects of AFR and engine speed on heat transfer characteristics for the exhaust port are also investigated. The baseline engine model is verified with previous published results. The obtained results clarify that transient heat transfer process inside exhaust port for port injection H2ICE were affected by the engine speed and AFR. It can be seen that for obtained results clarify that for transient analysis, the fluctuation with very small amplitudes for heat transfer coefficient and heat transfer rate during the compression, intake and part of power stroke. The rapid change for both of them occurs during the exhaust and part of power stroke due to the exhaust valve is open. The obtained results from the simulation can be employed to examine the emission production and engine performance.
first_indexed 2025-11-15T01:14:50Z
format Article
id ump-2214
institution Universiti Malaysia Pahang
institution_category Local University
language English
last_indexed 2025-11-15T01:14:50Z
publishDate 2011
recordtype eprints
repository_type Digital Repository
spelling ump-22142018-02-27T07:09:03Z http://umpir.ump.edu.my/id/eprint/2214/ Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach M. M., Noor M. M., Rahman K., Kadirgama R. A., Bakar M. F. A., Rahim TJ Mechanical engineering and machinery This paper was investigated the transient heat transfer characteristics in exhaust port for hydrogen fueled port injection internal combustion engine (H2ICE). One dimensional gas dynamics was described the flow and heat transfer in the components of the engine model. The engine model is simulated with variable engine speed and air fuel ratio (AFR). Engine speed varied from 2000 rpm to 5000 rpm with increment equal to 1000 rpm and AFR was varies from stoichiometric to lean limit. The effects of AFR and engine speed on heat transfer characteristics for the exhaust port are also investigated. The baseline engine model is verified with previous published results. The obtained results clarify that transient heat transfer process inside exhaust port for port injection H2ICE were affected by the engine speed and AFR. It can be seen that for obtained results clarify that for transient analysis, the fluctuation with very small amplitudes for heat transfer coefficient and heat transfer rate during the compression, intake and part of power stroke. The rapid change for both of them occurs during the exhaust and part of power stroke due to the exhaust valve is open. The obtained results from the simulation can be employed to examine the emission production and engine performance. 2011 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/2214/2/Heat_Transfer_Characteristics_in_Exhaust_Port_for_Hydrogen_Fueled_Port_Injection_Engine_A_Transient_Approach.pdf M. M., Noor and M. M., Rahman and K., Kadirgama and R. A., Bakar and M. F. A., Rahim (2011) Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach. Advanced Materials Research, 152-15. pp. 1909-1914. ISSN 1022-6680. (Published) http://www.scientific.net/AMR.152-153.1909
spellingShingle TJ Mechanical engineering and machinery
M. M., Noor
M. M., Rahman
K., Kadirgama
R. A., Bakar
M. F. A., Rahim
Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title_full Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title_fullStr Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title_full_unstemmed Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title_short Heat Transfer Characteristics in Exhaust Port for Hydrogen Fueled Port Injection Engine A Transient Approach
title_sort heat transfer characteristics in exhaust port for hydrogen fueled port injection engine a transient approach
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/2214/
http://umpir.ump.edu.my/id/eprint/2214/
http://umpir.ump.edu.my/id/eprint/2214/2/Heat_Transfer_Characteristics_in_Exhaust_Port_for_Hydrogen_Fueled_Port_Injection_Engine_A_Transient_Approach.pdf