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dc.contributor.authorMohammad Shaiful Ashrul Ishak
dc.date.accessioned2008-09-15T02:09:19Z
dc.date.available2008-09-15T02:09:19Z
dc.date.issued2006
dc.identifier.citationJournal of Engineering Research and Education, vol. 3, 2006, pages 60-69.en_US
dc.identifier.issn1823-2981
dc.identifier.urihttp://dspace.unimap.edu.my/123456789/2199
dc.identifier.urihttp://jere.unimap.edu.myen_US
dc.descriptionLink to publisher's homepage at http://jere.unimap.edu.myen_US
dc.description.abstractThis paper presents the effect of inserting swirler outlet orifice plate of different sizes at the exit plane of the radial air swirler in liquid fuel burner system. Tests were carried out with three different orifice plates with area ratios (orifice area to swirler exit area ratio) between 1.0 to 0.7 using 280mm inside diameter combustor of 1000mm length. Tests were conducted using commercial diesel as fuel. Fuel was injected at the back plate of the 45° vane angle swirler outlet using central fuel injector with single fuel nozzle pointing axially outwards. The aim of the insertion of orifice plates was to create the swirler pressure loss at the swirler outlet phase so that the swirler outlet shear layer turbulence was maximised to assist with fuel/air mixing. In the present work, orifice plate with smaller area ratios exhibited very low NOx emissions for the whole operating equivalence ratios. NOx reduction of more than 20% was achieved for orifice with 0.7 area ratio compared to area ratio of 1.0. Other emissions such as carbon monoxide increased with decrease in orifice area ratios. This implies that good combustion was achieved using smallest area ratios of orifice plate.en_US
dc.language.isoenen_US
dc.publisherKolej Universiti Kejuruteraan Utara Malaysiaen_US
dc.subjectSwirleren_US
dc.subjectOrifice plateen_US
dc.subjectNOx reductionen_US
dc.subjectCO emissionsen_US
dc.subjectNitrogen oxidesen_US
dc.subjectOil burnersen_US
dc.subjectCombustionen_US
dc.subjectPressure -- Measurementen_US
dc.titleLiquid Fuel Burner with Orifice Insertion for Low Noxious Emissions from combustion systemen_US
dc.typeArticleen_US


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