Please use this identifier to cite or link to this item: http://localhost:8081/jspui/handle/123456789/20233
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dc.contributor.authorMishra, Saumitra-
dc.date.accessioned2026-04-05T13:54:08Z-
dc.date.available2026-04-05T13:54:08Z-
dc.date.issued2023-09-
dc.identifier.urihttp://localhost:8081/jspui/handle/123456789/20233-
dc.guideMishra, Kirti Bhushanen_US
dc.description.abstractThe energydemandhasincreasedsignificantlywithtime,andfindingwaystoeffectively and sustainablysupplythisneedisessential.Asaresult,bothconventionalandrenewable energy outputwillneedtobeincreasedconsiderably.Itiscrucialtoidentifystrategiesfor addressing theseimmediateandfutureneeds.Fossilfuelscontinuetobeasignificantenergy source formanynationsinthepresent(75%)andthenearfuture(60-70%).Airpollution is oneofthemostsignificantenvironmentalissuestoday.AccordingtotheWorldHealth Organization, sevenmillionfatalitiesareattributedtoairpollutionannually.Mostofthese fatalities arecausedbybreathinginpollutedair,includingseveralharmfulpollutantssuch as particulatematter,ozone,andnitrogendioxide. Automobile exhaustandemissionsfromfactoriesandpowerplantsarecities’primary sources ofairpollution.Typically,industrialburnersareusedtoburnfossilfuels(Natural gas, LPG,dieseletc.)inindustrialapplications.Numerousnovelburnertechnologies and fuelmixturesarebeingproposedtolowerthepollutionfromthesame.However, little knowledgeisavailableontheclassificationofburnersbasedonsourceemissions. This currentworkfocusesoncreatingatestforevaluatingtheperformanceandemission characteristicsofanindustrialburner,alongwithtestingvariousgaseousandliquidfuel blends initwithparticularemphasisonemission. An indigenousburnertestrigisconstructedandusedwithvariousthermocouples,heatflux sensors, videoandthermalcameras,andfluegasanalysers.Foreachcaseofgaseousand liquid-fuelled flames,severalcharacteristicssuchasflamelength,flamediameter,volume, flowtype,heattransfertype,temperatureatvariousplacesinthecombustionchamber, and totalheatfluxaremeasured.Thenumerousemissioncomponentsthatmightbe detected intheexhaustaregivenmuchconsideration.Theconsequencesofvariousburner powerratings,equivalenceratios,andliquidblendsarediscussedindetailafterwards.Both conventionalandgreenfuelsusedinthepresentstudy,suchasCNG,propane,LPG,diesel, biodiesel,ethanolandDTBP,andatotalof125experimentsarecarriedout. The viabilityofusingCFDtocarryoutthenumericalsimulationofsuchresearchisalso investigated.TheCFDtoolusedinthisworkisOpenFOAM.Parametricanalysisto determine theeffectofairflowrateandoxygenconcentrationintheoxidiserstreamon variousflamecharacteristics(temperature,structure,emissioncomponents)havealsobeen carried out.en_US
dc.language.isoenen_US
dc.publisherIIT Roorkeeen_US
dc.titleEXPERIMENTAL AND NUMERICAL INVESTIGATION OF EMISSION CHARACTERISTICS FROM 20-70 KW BURNER FLAMESen_US
dc.typeThesisen_US
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