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时间:2019-03-11
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1、InternationalJournalofHeatandMassTransfer45(2002)4045–4055www.elsevier.com/locate/ijhmtModelingheatandmoisturetransferthroughfibrousinsulationwithphasechangeandmobilecondensatesa,*bJintuFan,XinghuoWenaInstituteofTextilesandClothing,TheHongKongPolytechnicUniversity,HungHom,Kowloon,HongKo
2、ngbLabandEquipmentDivision,TsinghuaUniversity,Beijing100084,ChinaReceived6April2001;receivedinrevisedform10November2001AbstractThispaperreportsonatransientmodelofcoupledheatandmoisturetransferthroughfibrousinsulation,whichforthefirsttimetakesintoaccountofevaporationandmobilecondensates.T
3、hemodelsuccessfullyexplainedtheexper-imentalobservationsofFarnworth[Tex.Res.J.56(1986)653],andthenumericalresultsofthemodelwerefoundtobeingoodagreementwiththeexperimentalresultsofadryingtest.Basedonthismodel,numericalsimulationwascarriedouttobetterunderstandtheeffectofvariousmaterialand
4、environmentalparametersontheheatandmoisturetransfer.Itwasfoundthattheinitialwatercontentandthicknessofthefibrousinsulationtogetherwiththeenvironmentaltemperaturearethethreemostimportantfactorsinfluencingtheheatflux.Ó2002ElsevierScienceLtd.Allrightsreserved.Keywords:Heatandmoisturetransfer
5、;Waterevaporation;Numericalsimulation1.Introductiontomobilecondensate,andpresentedanapproximatesolutionbyneglectingthecondensationduringtheini-Condensationinfibrousinsulationisaseriousprob-tialtransientperiodandeffectsofcondensatemotiononleminclothingandmanyotherapplicationssuchasthetemp
6、eraturedistribution.Thistheoreticalmodelwasbuildinginsulationandrefrigeratedspaceenvelopes,aslaterextendedbyShapiroandMotakef[3]toanalyzetheitcanresultindrasticreductioninthermalinsulationofunsteadyheatandmoisturetransportprocessesthroughthesystem.thecalculationofquasi-steadyfieldsintim
7、e-varyingDespiteofthevastpublishedworkonheatanddomainsandcomparedtheanalyticalresultswithex-moisturetransferinfibrousinsulation,littlehasbeenperimentalonesundersomeverylimitedcircumstances.doneonthecoupledheatandmoisturetransferwithThisanalysiswasonlyappropriatewhenthetimescalephasech
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