[工学]流体力学英文课件chap.pptx
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1、Overview of Fluid Mechanics 创作者:时间:2024年X月目录第第1 1章章IntroductionIntroduction第第2 2章章FluidPropertiesFluidProperties第第3 3章章FluidStaticsFluidStatics第第4 4章章FluidKinematicsFluidKinematics第第5 5章章FluidDynamicsFluidDynamics第第6 6章章ComputationalFluidDynamicsComputationalFluidDynamics第第7 7章章ConclusionConclusion
2、0101第1章 Introduction Importance Importance in in EngineeringEngineeringFluid mechanics plays Fluid mechanics plays a crucial role in a crucial role in various engineering various engineering disciplines such as disciplines such as aerospace,civil,and aerospace,civil,and mechanical mechanical enginee
3、ring.engineering.Understanding fluid Understanding fluid behavior is essential behavior is essential for designing efficient for designing efficient systems and systems and structures.structures.DefinitionofTermsResistancetoflowViscosityForceperunitareaPressureSpeedofflowVelocityTypesofFlowUniformfl
4、owrateSteadyFlowChaoticandirregularflowTurbulentFlowSmoothandorderlyflowLaminarFlow BernoullisEquation0103ContinuityEquation02Navier-StokesEquationsEnvironmentalEnvironmentalPollutioncontrolPollutioncontrolWatertreatmentWatertreatmentBiomedicalBiomedicalBloodflowdynamicsBloodflowdynamicsRespiratorys
5、ystemRespiratorysystemEnergyEnergyHydropowergenerationHydropowergenerationWindturbinesWindturbinesApplications in Various IndustriesAerospaceAerospaceAerodynamicsAerodynamicsPropulsionsystemsPropulsionsystemsFuture Developments in the FieldThefieldoffluidmechanicsiscontinuouslyevolvingwithadvancemen
6、tsincomputationalfluiddynamicsandexperimentaltechniques.Futuredevelopmentsmayincludemoreaccuratesimulations,enhancedpredictivemodels,andinnovativeapplicationsinemergingtechnologies.0202第2章 Fluid Properties Definition and classification of fluidsFluidsaresubstancesthatdeformcontinuouslyunderappliedsh
7、earstress,exhibitingthepropertyofflow.Theycanbeclassifiedasliquidsorgasesbasedontheirbehavior.Liquidshaveadefinitevolumeandtaketheshapeoftheircontainer,whilegaseshaveneitheradefinitevolumenorshape.Mass per unit volume of a substanceDensity0103Ratio of the density of a substance to thedensityofarefer
8、encesubstanceSpecificgravity02WeightperunitvolumeofasubstanceSpecificweightSignificanceSignificanceImpactstheflowbehaviorImpactstheflowbehavioroffluidsoffluidsDifferentiatesbetweenDifferentiatesbetweenliquidsandgasesbasedonliquidsandgasesbasedontheirviscositytheirviscosity Viscosity and its signific
9、anceViscosityViscosityAmeasureofafluidsAmeasureofafluidsresistancetodeformationresistancetodeformationundershearstressundershearstressSurface Surface tension and tension and capillaritycapillaritySurface tension is the Surface tension is the tendency of a liquid tendency of a liquid surface to shrin
10、k into surface to shrink into the minimum surface the minimum surface area possible.area possible.Capillarity is the Capillarity is the phenomenon of a liquid phenomenon of a liquid rising or falling in a rising or falling in a narrow tube due to narrow tube due to intermolecular forces intermolecul
11、ar forces between the liquid and between the liquid and the tube.the tube.CompressibilityoffluidsMeasureofafluidsresistancetovolumechangeunderpressureBulkmodulusAbilityofafluidtoreturntoitsoriginalshapeafterdeformationElasticityIncreaseinvolumeofafluidwithtemperature,impactingitsdensityandbehaviorTh
12、ermalexpansionanditseffectsRealfluidsRealfluidsExhibitviscosityandExhibitviscosityandcompressibility,leadingtocompressibility,leadingtocomplexflowbehaviorcomplexflowbehavior Flow behavior of ideal and real fluidsIdealfluidsIdealfluidsNon-viscousandNon-viscousandincompressible,followingincompressible
13、,followingsimplifiedflowpatternssimplifiedflowpatternsFluids that do not follow Newtons law of viscosityDefinition0103Study of how fluids deform and flow understressRheologicalpropertiesandbehavior02Blood,ketchup,andtoothpasteExamples 0303第三章 Fluid Statics The force per unit area exerted on a surfac
14、e by a fluidDefinitionofpressure0103Pascal,psi,barPressuremeasurementunits02Absolutepressure,gaugepressure,atmosphericpressureTypesoffluidpressurePascalslawanditsapplicationsHydraulicbrakes,hydraulicliftsHydraulicsystemsPneumatictools,pneumaticpumpsPneumaticsystemsBalancingoffluidcolumnsHydrostatice
15、quilibriumBuoyancy Buoyancy and and Archimedes Archimedes principleprincipleArchimedes principle Archimedes principle states that the buoyant states that the buoyant force acting on an force acting on an object immersed in a object immersed in a fluid is equal to the fluid is equal to the weight of
16、the fluid weight of the fluid displaced by the displaced by the object.This principle is object.This principle is crucial for crucial for understanding understanding buoyancy and the buoyancy and the behavior of objects in behavior of objects in fluids.fluids.StabilitycriteriaStabilitycriteriaPositi
17、vestability,neutralPositivestability,neutralstability,negativestabilitystability,negativestabilityFactorsFactorsinfluencinginfluencingstabilitystabilityShapeofbody,centerofShapeofbody,centerofgravity,metacentricheightgravity,metacentricheightStabilityStability analysisanalysismethodsmethodsInitialst
18、abilityassessment,Initialstabilityassessment,stabilityexperimentsstabilityexperimentsStability of submerged and floating bodiesMetacentricMetacentricheightheightDefinitionandimportanceDefinitionandimportanceCalculatingmetacentricCalculatingmetacentricheightheightManometryandpressuremeasurementWorkin
19、gprincipleandapplicationsU-tubemanometerMechanismandcalibrationBourdongaugeUseinhigh-pressureapplicationsPiezometerHydrostatic Hydrostatic forces on forces on submerged submerged bodiesbodiesWhen an object is When an object is submerged in a fluid,it submerged in a fluid,it experiences a buoyant exp
20、eriences a buoyant force and pressure force and pressure forces from the forces from the surrounding fluid.surrounding fluid.Understanding these Understanding these hydrostatic forces is hydrostatic forces is essential for essential for engineering engineering applications such as applications such
21、as designing submerged designing submerged structures and vessels.structures and vessels.AeronauticalAeronauticalengineeringengineeringAerostatics,aircraftdesignAerostatics,aircraftdesignconsiderationsconsiderationsCivilengineeringCivilengineeringHydraulicstructuredesign,Hydraulicstructuredesign,dam
22、stabilitydamstabilityMechanicalMechanicalengineeringengineeringFluidpowersystems,pumpFluidpowersystems,pumpdesigndesignApplications of fluid statics in engineeringNavalNavalarchitecturearchitectureStabilityanalysisofshipsStabilityanalysisofshipsBuoyancycalculationsBuoyancycalculationsFluid statics i
23、n open and closed systemsFluidstaticsdealswiththebehavioroffluidsatrestandthedistributionofpressureinstaticfluidsystems.Understandingtheprinciplesoffluidstaticsiscrucialforvariousengineeringapplications,includingdesigninghydraulicsystems,calculatinghydrostaticforces,andensuringstabilityinfluidenviro
24、nments.Calculating pressure at different depths in a fluidHydrostaticpressureequation0103PressuredistributioninconnectedvesselsHydrostaticparadox02EffectoffluiddensityanddepthonpressurePressurevariationinopentanks 0404第四章 Fluid Kinematics Description Description of fluid of fluid motionmotionFluid m
25、otion refers to Fluid motion refers to the movement of a fluid the movement of a fluid in a particular direction in a particular direction or pattern.It can be or pattern.It can be described using described using Lagrangian and Lagrangian and Eulerian approaches,Eulerian approaches,which provide dif
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