Study of flame quenching in SI engine

dc.contributor.guideNedunchezhian Nen_US
dc.coverage.spatialFlame quenching in SI engineen_US
dc.creator.researcherPonnusamy Pen_US
dc.date.accessioned2014-03-11T08:28:53Z
dc.date.available2014-03-11T08:28:53Z
dc.date.awarded30/10/2012en_US
dc.date.completed01/10/2012en_US
dc.date.issued2014-03-11
dc.date.registeredn.d.en_US
dc.description.abstractOne of the promising methods for improving both fuel economy newlineand to reducing pollution is lean mixture operation with Exhaust Gas newlineRecirculation (EGR)for SI engine. A practical problem in fully exploiting newlineEGR is that, at very high levels, EGR suppresses the flame speed sufficiently newlinethat combustion becomes incomplete and unacceptable levels of particulate newlinematter (PM) and hydrocarbons (HC) are released in the exhaust. This newlinetransition to incomplete combustion is characteristically very abrupt due to newlinethe high nonlinear effect of EGR on flame speed. Erratic combustion is the newlineproblem associated with EGR operated engine. A new method, catalytically newlineactivated lean burn combustion with EGR, has been investigated in the newlinepresent work. This method requires minimum modifications to the base newlineengine and it can be easily adopted even to the existing engines fitted in vehicles. As the aim of the present work is to develop a lean burn combustion newlinesystem, with cost effective, noble metal catalysts such as platinum, palladium newlineetc., are not used. Some non-noble metals which perform equally as noble newlinemetal catalysts for hydrocarbon oxidation are used. The results show that the newlinenon-noble metal catalysts such as copper, nickel, and chromium showed newlinereasonable catalytic activity. Many works on catalytically activated combustion in SI engine newlinereport the improvement in fuel economy and reduction in exhaust emissions. newlineThere have been some contradictions regarding the effect of catalytic coating newlineon HC emissions. Some researchers have proposed that the catalytic coated newlinesurface activates pre-flame reactions inside the boundary layer which reduces newlinethe fuel concentration in the boundary layer. When the flame arrives at the newlineboundary layer, it extinguishes before reaching the wall due to the availability newlineof less fuel near the wall. The partially burned fuel and its products contribute newlineto increased HC emissions. However, other researchers argue that the newlinepre-flame reactions helps in reducing exhaust HC emission.en_US
dc.description.noteAppendix p.151-170, References p.171-178.en_US
dc.format.accompanyingmaterialNoneen_US
dc.format.dimensions21 cm.en_US
dc.format.extentxxiv, 181p.en_US
dc.identifier.urihttp://hdl.handle.net/10603/17399
dc.languageEnglishen_US
dc.publisher.institutionFaculty of Mechanical Engineeringen_US
dc.publisher.placeChennaien_US
dc.publisher.universityAnna Universityen_US
dc.relationp.171-178.en_US
dc.rightsuniversityen_US
dc.source.universityUniversityen_US
dc.subject.keywordExhaust Gas Recirculationen_US
dc.subject.keywordFlame quenchingen_US
dc.subject.keywordHydrocarbonsen_US
dc.subject.keywordMechanical Engineeringen_US
dc.subject.keywordParticulate matteren_US
dc.subject.keywordSI engineen_US
dc.titleStudy of flame quenching in SI engineen_US
dc.title.alternativeen_US
dc.type.degreePh.D.en_US

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