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A Study on Gasoline Engine Combustion by Observation of Intermediate Reactive Products during Combustion

Masaaki NoguchiYukiyasu TanakaTaro TanakaY. Takeuchi

Abstract

<div class="htmlview paragraph">In the case of two-stroke cycle gasoline engines, it is a rather well known fact that under light-load operation they do not run smoothly, but have a high concentration of unburned hydrocarbons (HC) in the exhaust gas, as well as high a fuel consumption rate.</div> <div class="htmlview paragraph">In the study to improve such unstable conditions by devising a scavenging process of the engine, we often encountered self-ignited combustion, a kind of “RUN-ON”. This combustion was found to be very stable and fine with low missions of HC, and improved fuel consumption.</div> <div class="htmlview paragraph">A study was carried out on this self-ignited combustion by optical analysis. Many differences were observed between self-ignited combustion and conventional spark ignited combustion on the behavior of formation of chemical intermediate products before and after ignition.</div> <div class="htmlview paragraph">Self-ignited combustion has been found to occur under relatively low cylinder pressure and temperature, compared to diesel engine combustion, presumably by virtue of intermediate products. This special self-ignited combustion is named “TS (Toyota-Soken) combustion”.</div>

Advanced Combustion Engine TechnologiesVehicle emissions and performanceEngineering Applied ResearchCombustionGasolineAutomotive engineeringEnvironmental scienceCombustion productsPetrol engineInternal combustion engineWaste managementChemistryEngineering
Citations
440
FWCI
1.00
field-weighted impact
References
2
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64%
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