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1、ARTICLEINPRESSNuclearInstrumentsandMethodsinPhysicsResearchA605(2009)384–387ContentslistsavailableatScienceDirectNuclearInstrumentsandMethodsinPhysicsResearchAjournalhomepage:www.elsevier.com/locate/nimaDevelopmentofMonteCarloautomaticmodelingfunctionsofMCAMforTR
2、IPOLI-ITERapplicationa,b,ca,ba,ba,ba,bL.Lu,Y.K.Lee,J.J.Zhang,Y.Li,Q.Zeng,Y.C.WuaInstituteofPlasmaPhysics,ChineseAcademyofSciences,Hefei,Anhui230031,ChinabSchoolofNuclearScienceandTechnology,UniversityofScienceandTechnologyofChina,Hefei,Anhui230027,ChinacCommissa
3、riata`l’EnergieAtomique,CEA-Saclay,DEN/DANS/DM2S/SERMA,91191Gif-sur-YvetteCedex,FrancearticleinfoabstractArticlehistory:TRIPOLIisaMonteCarloparticletransportcodesimulatingthethree-dimensionaltransportofneutronsReceived18February2009andphotonswiththeMonteCarlometh
4、od,anditcanbeusedformanyapplicationstonucleardevicesReceivedinrevisedformwithcomplexgeometries;however,modelingofacomplexgeometryisatime-consuminganderror-18March2009pronetask.TherecentlydevelopedfunctionsofMonteCarloAutomaticModeling(MCAM)system,Accepted23March2
5、009whichisaninterfacecodethatcanfacilitateMonteCarlomodelingbyemployingtheCADtechnology,Availableonline5April2009haveimplementedthebidirectionalconversionbetweentheCADmodelandtheTRIPOLIcomputationKeywords:model.Inthisstudy,differentgeometricrepresentationsofCADsy
6、stemandTRIPOLIcodeandtheMonteCarloparticletransportsimulationmethodologyofbidirectionalconversionbetweenthemwereintroduced.ATRIPOLIinput?leofMCAMInternationalThermonuclearExperimentalReactor(ITER)benchmarkmodel,whichwasdistributedtoTRIPOLIvalidatetheMonteCarlomod
7、elingtools,wascreatedandappliedtosimulateD–TfusionneutronsourceITERsamplingandcalculate?rstwallloading.ThentheresultswerecomparedwiththatofMonteCarloN-Particle(MCNP)andthegoodagreementspresentthefeasibilityandvalidity.&2009ElsevierB.V.Allrightsreserved.1.Introduc
8、tioncomplexsystemsingreatdetail.AneffectivewaytoenhancetheMCmodelingcapabilityistodevelopaninterfacecodethatcanTheMonteCarlo(MC)stochasticmethodisawidelyusedtr