Title of article :
Dropletentrainmentcorrelationinverticalupwardco-currentannulartwo-phaseflowOriginalResearchArticle
Author/Authors :
PravinSawant، نويسنده , , MamoruIshii، نويسنده , , MichitsuguMori، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Upwardannulartwo-phaseflowinaverticaltubeischaracterizedbythepresenceofliquidfilmonthetubewallandentraineddropletladengasphaseflowingthroughthetubecore.Entrainmentfractioninannularflowisdefinedasafractionofthetotalliquidflowflowingintheformofdropletsthroughthecentralgascore.Itspredictionisimportantfortheestimationofpressuredropanddryoutinannularflow.Inthefollowingstudy,measurementsofentrainmentfractionhavebeenobtainedinverticalupwardco-currentair–waterannularflowcoveringwiderangesofpressureandflowconditions.Comparisonoftheexperimentaldatawiththeexistingentrainmentfractionpredictioncorrelationsrevealedtheirinadequaciesinsimulatingthetrendsobservedunderhighflowandhighpressureconditions.Furthermore,severalcorrelationsavailableintheliteratureareimplicitandrequireiterativecalculations.
Analysisoftheexperimentaldatashowedthatthenon-dimensionalnumbers,Webernumber(We=ρg〈jg〉2D/σ(Δρ/ρg)1/4)andliquidphaseReynoldsnumber(Ref=ρf〈jf〉D/μf),successfullycollapsethedata.Inviewofthis,simple,explicitcorrelationwasdevelopedbasedonthesenon-dimensionalnumbersforthepredictionofentrainmentfraction.Thenewcorrelationsuccessfullypredictedthetrendsunderthehighflowandhighpressureconditionsobservedinthecurrentexperimentaldataandthedataavailableinopenliterature.However,inordertousetheproposedcorrelationitisnecessarytopredictthemaximumpossibleentrainmentfraction(orlimitingentrainmentfraction).Inthecurrentanalysis,anexperimentaldatabasedcorrelationwasusedforthispurpose.However,abettermodelorcorrelationisnecessaryforthemaximumpossibleentrainmentfraction.Atheoreticaldiscussiononthemechanismandmodelingofthemaximumpossibleentrainmentfractionconditionispresented.
Journal title :
Nuclear Engineering and Design Eslah
Journal title :
Nuclear Engineering and Design Eslah