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Natural gas HCCI engine operation with exhaust gas fuel reforming
Min Yap
, Sylvain Peucheret
, A Megaritis
, Miroslaw Wyszynski
,
Hongming Xu
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
86
Citations (Scopus)
Overview
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Keyphrases
Exhaust Gas Reforming
100%
Natural Gas
100%
Compression Ignition Engine
100%
Engine Operation
100%
Homogeneous Charge Compression Ignition
100%
Intake Temperature
100%
Reformed Gas
40%
International Association
20%
Hydrogen Energy
20%
Engine Load
20%
Paper Documents
20%
Temperature Requirements
20%
High Compression Ratio
20%
Hydrogen Production
20%
Low Load
20%
Autoignition
20%
Charge Heating
20%
Closed-loop
20%
Auto-ignition Temperature
20%
Intake Air Temperature
20%
Start of Combustion
20%
Compression Stroke
20%
Low Engine Load
20%
Advanced Combustion
20%
Engineering
Exhaust Gas
100%
Fuel Reforming
100%
Natural Gas
100%
Homogenous Charge Compression Ignition
100%
Intake Temperature
100%
Autoignition
40%
Experimental Result
20%
Compression Ratio
20%
Closed Loop
20%
Hydrogen Energy
20%
Ignition Temperature
20%