• Title of article

    Vaporexplosionstudiesfornuclearandnon-nuclearindustriesOriginalResearchArticle

  • Author/Authors

    RusiP.Taleyarkhan، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    17
  • From page
    1061
  • To page
    1077
  • Abstract
    Energeticmelt-waterexplosionsareawell-establishedcontributortoriskfornuclearreactors,andevenmoresoforthemetalcastingindustry.In-depthstudieswereundertakeninanindustry-nationallaboratorycollaborativeefforttounderstandtherootcausesofexplosiontriggeringandtoevaluatemethodsforprevention.Thesteamexplosiontriggeringstudies(SETS)facilitywasdevisedandimplementedforderivingkeyinsightsintoexplosionprevention.Dataobtainedindicatedthatonsetofbasesurface-entrapmentinducedexplosiveboiling-causedtriggershocksisaresultofcomplexcombinationofsurfacewettability,typeofcoating(organicversusinorganic),degreeofcoatingwearoff,existenceofbypasspathwaysforpressurerelief,charringandnon-condensablegas(NCG)releasepotential.OftheseparametersNCGswerefoundtoplayapreeminentroleonexplosionpreventionbystabilizingthemelt-watersteaminterfaceandactingasashockabsorber.TheroleofNCGswasexperimentallyconfirmedusingSETSfortheireffectonstablefilmboilingusingadownwardfacingheatedbodythroughwhichgaseswereinjected.ThepresenceofNCGsinthesteamfilmlayercausedasignificantdelayinthetransitioningoffilm-to-nucleateboiling.TheroleofNCGsonexplosionpreventionwasthereafterdemonstratedmoredirectlybyintroducingmoltenmetaldropsintowaterpoolswithandwithoutNCGbubbling.WhereasspontaneousandenergeticexplosionstookplacewithoutNCGinjection,onlybenignquenchingoccurredinthepresenceofNCGs.GravimetricanalysesoforganiccoatingswhichareknowntopreventexplosiononsetwerealsofoundtoreleasesignificantNCGsduringthermalattackbymeltinthepresenceofwater.Thesefindingsofferanovel,simple,cost-effectivetechniqueforderivingfundamentalinsightsintomelt-waterexplosionsaswellasforexplosionpreventionundermostconditionsofinteresttometalcasting,andpossiblyfornuclearreactorsystemsduringsevereaccidentconditions.Energeticsofentrapmentboilinginducedshocksforexplosiveandnon-explosiveconditionswerequantifiedusingamodifiedzero-crossingtechnique.InhonorofProfessorR.T.LaheyJr.thenon-dimensionalparameter“LT”wasproposedtodelineatetheexplosion-onsetboundary.ExperimentalevidencesuggeststhatasystemwithLTaboveathresholdvalueof∼65leadstothegrowthofperturbationsandonsetofpropagatingmelt-waterexplosions.Thedataappeartooffervaluableinsightsintoexplosionpreventioninnuclearreactorsduringbeyond-designbasisaccidentconditions.Anunresolvedissueconcernsthepotentialfortriggershocksfromchemicalignitionreactionsbetweenreactivemetalsincontactwithoxidecoatingssuchasrust.
  • Journal title
    Nuclear Engineering and Design Eslah
  • Serial Year
    2005
  • Journal title
    Nuclear Engineering and Design Eslah
  • Record number

    894907