Advanced particle-based velocimetry techniques for microscale flows

被引:0
作者
Sang Joon Lee
Seok Kim
机构
[1] Pohang University of Science and Technology,Department of Mechanical Engineering, Center for Biofluid and Biomimic Research
[2] Korea Atomic Energy Research Institute,Thermal Hydraulics Safety Research Division
来源
Microfluidics and Nanofluidics | 2009年 / 6卷
关键词
Micro; X-ray; Stereoscopy; Holography; Particle tracking velocimetry;
D O I
暂无
中图分类号
学科分类号
摘要
Recently, microscale flows have been receiving large attention in various research areas. However, most conventional imaging techniques are unsatisfactory due to difficulties encountered in the visualization of microscale flows. Recent advances in optics and digital image processing techniques have made it possible to develop several advanced micro-PIV/PTV techniques. They can be used to obtain quantitative velocity field information of various microscale flows from visualized images of tracer particles. As new advanced micro-PIV techniques, the basic principle and typical application of the time-resolved micro-PIV and X-ray micro-PTV methods are explained in this review. As three-dimensional (3D) velocity field measurement techniques that can be used to measure microscale flows, the stereoscopic micro-PTV, defocusing micro-PTV and holographic micro-PTV methods are introduced. These advanced PIV/PTV techniques can be used to reveal the basic physics of various microscale flows and will play an important role in visualizing hidden microscale flow phenomena, for which conventional methods face several difficulties in analysis.
引用
收藏
相关论文
共 194 条
  • [1] Adrian RJ(1991)Particle imaging techniques for experimental fluid mechanics Annu Rev Fluid Mech 23 261-304
  • [2] Baek SJ(1996)A new two-frame particle tracking algorithm using match probability Exp Fluids 22 23-32
  • [3] Lee SJ(2004)Validation of an analytical solution for depth of correlation in microscope particle image velocimetry Meas Sci Technol 15 318-327
  • [4] Bourdon CJ(2005)Micro-PIV measurement and simulation in complex microchannel geometries Meas Sci Technol 1 619-626
  • [5] Olsen MG(2006)Three-dimensional, three-component velocity measurements using stereoscopic micro-PIV and PTV Meas Sci Technol 17 2175-2185
  • [6] Gorby AD(2007)Three-component micro-PIV using the continuity equation and a comparison of the performance with that of stereoscopic measurements Exp Fluids 42 197-205
  • [7] Bown MR(2000)An image processing and optimal nonlinear filtering technique for particle image velocimetry of microflows Exp Fluids 29 S42-S50
  • [8] MacInnes JM(2006)Pressure field evaluation in microchannel junction flows through μPIV measurement Microfluid Nanofluid 2 447-453
  • [9] Allen RWK(2006)Digital in-line holographic microscopy Appl Opt 45 836-850
  • [10] Bown MR(1993)Microfluidics—a review J Micromech Microeng 3 168-182