Studies of the Combustion Process with Simultaneous Formaldehyde and OH PLIF in a Direct-Injected HCCI Engine(<Special Issue>Advanced Combustion Technology in Internal Combustion Engines)
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概要
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This paper presents simultaneous laser based measurements of formaldehyde and OH-radical distributions in a 0.5 liter optical HCCI engine with direct injection. Formaldehyde is formed as an intermediate species when combusting hydrocarbons. The formation occurs through low temperature reactions in an early phase of the combustion process. Later in the process formaldehyde is being consumed. Formaldehyde is, therefore, used as indicator of the first stage of combustion and a marker of zones with low-temperature reactions. The OH radical is formed as an intermediate during the high temperature reactions, and is used as a marker of zones where the combustion is ongoing. The purpose of the investigation was to study how the combustion process is affected by the change in homogeneity that arises from early and late injection, respectively. The measurement technique used was planar laser-induced fluorescence where formaldehyde was excited at 355nm and OH at 283nm.
- 一般社団法人日本機械学会の論文
- 2005-11-15
著者
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Richter Mattias
Division Of Combustion Physics Lund Institute Of Technology
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Alden Marcus
Division Of Combustion Physics Lund Institute Of Technology
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Johansson Bengt
Division Of Combustion Engines Lund Institute Of Technology.
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Nygren Jenny
Division Of Combustion Physics Lund Institute Of Technology
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COLLIN Robert
Division of Combustion Physics, Lund Institute of Technology
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HILDINGSSON Leif
Division of Combustion Engines, Lund Institute of Technology.
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Collin Robert
Division Of Combustion Physics Lund Institute Of Technology
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Hildingsson Leif
Division Of Combustion Engines Lund Institute Of Technology.
関連論文
- Studies of the Combustion Process with Simultaneous Formaldehyde and OH PLIF in a Direct-Injected HCCI Engine(Advanced Combustion Technology in Internal Combustion Engines)
- Studies of the Combustion Process with Simultaneous Formaldehyde and OH PLIF in a Direct-Injected HCCI Engine(HCCI, Combustion Processes II)