流体动力学测量的粒子图像测速(42)课件.ppt
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- 流体动力学 测量 粒子 图像 测速 42 课件
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1、Lyes KADEM,Ph.D;EngParticle Image Velocimetry for Fluid Dynamics Measurementskademencs.concordia.caLaboratory for Cardiovascular Fluid DynamicsMIE Concordia University2Presentation-A bit of history-What is PIV?-How to perform PIV measurements?-Which PIV system and for What?-How to post-process Data?
2、3A Little Bit fo History Origins:Flow visualizations 70s:Laser Speckle Velocimetry 80s:LSV,PTV,PIV,LASER development CCD cameras development Computers development First scientific paper on PIV(Adrian 1984 in Appl Opt)First commercial PIV systems 1988(TSI Inc.)Ludwig Prandtl operating his water chann
3、el in 19044What is PIV?Flow visualizationParticle tracking velocimetry(PTV)Particle image velocimetry(PIV)Particle soeckle velocimetry(PIV)5Very Basic Idea Behind Optical flow measurementsDisplacementTimeYou are HereVelocity6You are HereVery Basic Idea Behind Optical flow measurements7Very Basic Ide
4、a Behind Optical flow measurementsParticleBoundaryLaser sheetCCD Camera89Laser SheetUpper viewSide viewLaser Sheet thicknessLaser Sheet highThin laser sheetout of plane movement Thick laser sheetdecrease in S/N10Laser Sheet-Inter-pulse(t)timing may vary from less than 1 s to many ms depending upon t
5、he velocity of the flow.-A large amount of light(from 20 mJ to 400 mJ)must be available in a short time(5ns).-The repetition rate of a pulsed laser is typically 10-30Hz adequate only for velocities lightA part of the light is scattered at 90:Light scattering by a 10 m glass particle in water(from Ra
6、ffel 1998)510intensitylightLaserintensitylightcapturedCCDLight diffusion 1/r2:minimize the distance camera-laser sheetA large particle scatters more light than a small particle.Which particle size to choose?:the size dilemma!14The main Point:The particlesFor spherical particles,in a viscous flow at
7、low Reynolds number(Stokes flow)Velocity shift due to difference in densityadUpp182For gravitational velocity:a gWhich particle size to choose?:the size dilemma!15The main Point:The particlesStep response of a particleMeasures the tendency of a particle to attain velocity equilibrium with fluid182pp
8、sdA small particle follows better the flow than a large particle.Which particle size to choose?:the size dilemma!16The main Point:The particlesSmall particlesLarge particlesFollow the flowLight scatteringStep responseGoodBadGoodBadgoodBad Which particle size to choose?:the size dilemma!17The main Po
9、int:The particlesFor liquids-Polystyrene(10-100 m);aluminum(2-7 m);glass spheres(10-100 m).Usually particle diameter of 10-20 m is a good compromise.Which particle size to choose?:the size dilemma!18The main Point:The particlesWhich particle size to choose?:the size dilemma!For gas-Polystyrene(0.5-1
10、0 m);aluminum(2-7 m);magnesium(2-5 m);different oils(0.5-10 m).Usually particle diameter of 1-5 m is a good compromise.-Due to the great difference between the index of refraction of gas and particles:small particles in gas scatter enough light to be detected19The main Point:The particles-The probab
11、ility of finding a particle within the region of interest:1 Prob 0.Usually a concentration of 15-20 particles/mm3Higher particle concentrations are either not achievable or not desirable fluid dynamically(to avoid a two phase flow effect)Which particles concentration?20CCD CameraSingle frame/multi-e
12、xposureMulti-frame/multi-exposureThe spatial resolution of CCD arrays is at least two order of magnitude lower than photographic film.Ambiguity in the direction of the flow?Particle image acquisition21Pulse durationInter-pulse33.3 ms255 sCCD CameraParticle image acquisition22CCD Camera:Frame-stradel
13、ling techniquepixelframe storage areaTransfert time:-pixel to frame storage area:500 ns-frame storage area to PC:33 ms1000 x1000Particle image acquisition23CCD CameraWhat do you want from you camera?-Record sequential images in separate frames.-High spatial resolution.-Capture multiple frames at hig
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