Micro-resolution particle image velocimetry

被引:5
|
作者
Wereley, ST [1 ]
Santiago, JG [1 ]
Chiu, R [1 ]
Meinhart, CD [1 ]
Adrian, RJ [1 ]
机构
[1] Univ Calif Santa Barbara, Dept Mech & Environm Engn, Santa Barbara, CA 93106 USA
关键词
particle image velocimetry; PIV; MEMS; microfluidics;
D O I
10.1117/12.304370
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Particle image velocimetry (PTV), a technique commonly used at the macroscopic level to measure velocity vectors of particle-seeded flows, is adapted to measure both instantaneous and ensemble-averaged flow fields in microfluidic MEMS devices, where micron-scale spatial resolution is critical. Adapting PTV to the microscopic level presents a number of challenges, including: (1) visualizing tracer particles that are smaller than the wavelength of light, (2) minimizing errors due to the Brownian motion of the tracer particles, and (3) recording particle images with short exposure times, so that their motion does not cause particle streaking in the image field. The PIV technique is used to measure a low Reynolds number Hele-Shaw flow around a roughly 30 mu m elliptical obstruction and a low Reynolds number flow through a 20 x 200 mu m capillary tube. Velocity vector fields are presented with a spatial resolution of 6.9 x 6.9 x 1.5 mu m. In principle, superresolution particle tracking velocimetry (PTV) can be used to extend the spatial resolution of the velocity measurements down to approximately 1.5 x 1.5 x 1.5 mu m.
引用
收藏
页码:122 / 133
页数:12
相关论文
共 50 条
  • [41] Lensless particle image velocimetry
    Eppink, Jenna
    Yao, Chung-sheng
    [J]. EXPERIMENTS IN FLUIDS, 2024, 65 (05)
  • [42] Particle image velocimetry: A review
    Grant, I
    [J]. PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 1997, 211 (01) : 55 - 76
  • [43] Camera for particle image velocimetry
    不详
    [J]. OPTICS AND LASER TECHNOLOGY, 1996, 28 (02): : R7 - R7
  • [44] Flow measurements in microporous media using micro-particle image velocimetry
    Lu, Xianke
    Zhao, Yuyuan
    Dennis, David J. C.
    [J]. PHYSICAL REVIEW FLUIDS, 2018, 3 (10):
  • [45] Micro Particle Image and Tracking Velocimetry for Assessing Flow in the Circulatory System of Tunicates
    Jiminez, M.
    Murtagh, N.
    Waldrop, L. D.
    [J]. INTEGRATIVE AND COMPARATIVE BIOLOGY, 2019, 59 : E343 - E343
  • [46] Optical coherence tomography-based micro-particle image velocimetry
    Mujat, Mircea
    Ferguson, R. Daniel
    Iftimia, Nicusor
    Hammer, Daniel X.
    Nedyalkov, Ivaylo
    Wosnik, Martin
    Legner, Hartmut
    [J]. OPTICS LETTERS, 2013, 38 (22) : 4558 - 4561
  • [47] Infrared micro-particle image velocimetry in silicon-based microdevices
    Liu, D
    Garimella, SV
    Wereley, ST
    [J]. EXPERIMENTS IN FLUIDS, 2005, 38 (03) : 385 - 392
  • [48] Entrance length characteristics in microchannels using micro-particle image velocimetry
    Ahmad, Tariq
    Hassan, Ibrahim
    Muwanga, Roland
    [J]. ICNMM2007: PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON NANOCHANNELS, MICROCHANNELS, AND MINICHANNELS, 2007, : 853 - 861
  • [49] MICRO-PARTICLE IMAGE VELOCIMETRY FOR IMAGING FLOWS IN PASSIVE MICROFLUIDIC MIXERS
    Witkowski, Dariusz
    Kubicki, Wojciech
    Dziuban, Jan A.
    Jasikova, Darina
    Karczemska, Anna
    [J]. METROLOGY AND MEASUREMENT SYSTEMS, 2018, 25 (03) : 441 - 450
  • [50] Infrared micro-particle image velocimetry in silicon-based microdevices
    Dong Liu
    Suresh V. Garimella
    Steven T. Wereley
    [J]. Experiments in Fluids, 2005, 38 : 385 - 392