Numericalsimulationsofpremixedcoolflamesofdimethylether/oxygenmixtures.docx
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1、Article history:Received 6 April 2015Revised 18 June 2015Accepted 19 June 2015 Availableonline 21 July 2015Keywvak:Cool amcsFlame speedExtinction limitDinieihyl etherOzoneNumericalsimulationsofpremixedcoolflamesofdimethylether/oxygenmixturesYiguangJu,ChristopherB.Reuter,SangHeeWonDepartmentOfMechani
2、calandAerospaceEngineering,PfiMegnUnNersiiy,PrbWeion.Nl08X4,USAarticleinfoThCformationanddynamicsofpremixedCoOlIlamcsarenumericallyinvestigatedbyusingadetailedkineticmechanismofdimethylethermixturesinbothfreely-propagatingandstretchedcounterflowflameswithandwithoutozonesensitization.Thepresentstudyf
3、ocusesonthedynamicsandtransitionsbetweenCOOInanleSandhightemperatureflames.Theimpactsofmixturetemperature,inertgastemperature,andozoneconcentrationonlowtemperatureignition.COOl11ameformation,and11amnubleregionsofdiHerent11ameregimesareinvestigated.Forthefreely-propagating11ames,threedifYerentflameSi
4、niciures(hightemperature11anes,doubleflames,andCOOlflames)arefound.ThepresentstudyshowsthattheflammabilitylimitofdimethyletherisSigniflCanllyextendedbytheappearanceofcoolflamesandthattheconventionalconceptofthe(Iamniabilitylimitofahightemperatureflameoughttobereconsidered.Furthermore,theresultsdemon
5、stratethatthecoolamepropagationspeedcanbesignificantlyhigherthanthatofncar-limithightemperatureflamesandthatozoneadditiondramaticallyacceleratesCheformationofcool11anesatlowtemperaturesandextendstheflammabilitylimit.Aschematicofamodified11ammabilitylimitdiagramincludingbothhightemperatureflamesandCO
6、OInameSisproposed.Forstretchedcounterflowflanes.the*sulsalsoshowthatmultipleameregimesexistwithandwithoutozoneaddition.Itisdemonstratedthatatthesamemixtureenthalpy,ozoneadditionkineticallyextendsthecoolflameextinctionlimit(oahigherstretchrale.Moreover,withozoneaddition,twodierenicoolflametransitionr
7、egimes:alowtemperatureignitiontransitionandadirectcool11amctransitionwithoutanignitionlimitathighertemperature,arcpredicted.ThepresentresultssuggestthatCoOltlamescanbeanimportantcombustionprocessinaffectingIlammabilitylimitsandflameregimesasthemixturetemperature,turbulentmixing,andradicalProductioiV
8、recirculationareincreased.Theresultsalsoprovideguidanceinobservingself-sustainingpremixedcl11anesinexperiments.2015TheCombustionInstitute.PublishedbyElscvicrInc.Allrightsrcser,cd.IUre/pressuredomainwereobtained112.I4.Nevertheless,fewstudieshavebeencarriedoutonCOOlflamedynamics,extinction,andabstract
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