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基于CFD的加油枪流场分析 Title:ComputationalFluidDynamics(CFD)AnalysisofFuelDispenserNozzleFlowField Abstract: Inpetrolstations,thefueldispensernozzleisacriticalcomponentresponsiblefortheefficientandsafetransferoffuelintothevehicle'stank.Understandingtheflowcharacteristicswithinthenozzleisessentialtoimproveitsperformance,reducefuelspillage,andensurecustomersatisfaction.ThisstudyaimstoanalyzetheflowfieldofafueldispensernozzleusingComputationalFluidDynamics(CFD)simulation.TheCFDmodelwillbevalidatedbyexperimentaldata,andtheimpactofnozzledesignparametersontheflowfieldwillbeinvestigated. 1.Introduction: Theefficientdeliveryoffuelatpetrolstationsiscrucialforasmoothcustomerexperienceandoverallsafety.Thefueldispensernozzleplaysavitalroleintheprocess,asitcontrolstheflowrate,minimizesspillage,andensuresthepreventionofstaticelectricitybuildup.Understandingtheflowcharacteristicswithinthenozzleisessentialforoptimizingitsdesignandenhancingitsperformance.ComputationalFluidDynamics(CFD)hasproventobeaneffectivetoolforanalyzingflowfieldsinvariousengineeringapplications.Inthisstudy,CFDwillbeutilizedtoinvestigatetheflowfieldofafueldispensernozzle. 2.Methodology: TheCFDsimulationwillbeconductedusingspecializedsoftware,suchasANSYSFluentorOpenFOAM,whicharewidelyusedinanalyzingfluidflowproblems.Thegeometryofthefueldispensernozzle,includingitsinternalcomponents,willbeconstructedinthesoftware.Thegoverningequationsoffluidflow,namelytheNavier-Stokesequations,willbesolvednumerically,consideringtheappropriateboundaryconditions.TheCFDmodelwillbevalidatedbycomparingthesimulationresultswithexperimentaldata. 3.ModelValidation: ToensuretheaccuracyoftheCFDsimulation,experimentalmeasurementswillbeconductedusingaphysicalsetupundercontrolledconditions.Theflowrate,pressure,andvelocitydistributionwillbemeasuredatvariouslocationswithinthenozzle.TheexperimentaldatawillbecomparedwiththesimulationresultstovalidatetheCFDmodel. 4.ParameterStudy: AfterverifyingtheCFDmodel,aparametricstudywillbeconductedtoexaminetheimpactofv