Three-dimensional three-component particle velocimetry for microscale flows using volumetric scanning

被引:16
|
作者
Klein, S. A. [1 ]
Moran, J. L. [1 ]
Frakes, D. H. [1 ]
Posner, J. D. [1 ]
机构
[1] Arizona State Univ, Tempe, AZ 85287 USA
关键词
particle-image velocimetry; particle-tracking velocimetry; PIV; PTV; confocal; microscopy; piezo; volumetric scanning; super resolution PIV; temporally resolved; time resolved; microfluidics; micro PIV; piezo actuated; objective positioner; IMAGE VELOCIMETRY; CONFOCAL MICROSCOPY; BROWNIAN-MOTION; PIV; VELOCITY; PERFORMANCE; PTV; VISUALIZATION; RESOLUTION; ALGORITHM;
D O I
10.1088/0957-0233/23/8/085304
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We present a diagnostic platform for measuring three-dimensional three-component (3D3C) velocity fields in microscopic volumes. The imaging system uses high-speed Nipkow spinning disk confocal microscopy. Confocal microscopy provides optical sectioning using pinhole spatial filtering which rejects light originating from out-of-focus objects. The system accomplishes volumetric scanning by rapid translation of the high numerical aperture objective using a piezo objective positioner. The motion of fluorescent microspheres is quantified using 3D3C super resolution particle-imaging velocimetry with instantaneous spatial resolutions of the order of 5 mu m or less in all three dimensions. We examine 3D3C flow in a PDMS microchannel with an expanding section at 3D acquisition rates of 30 Hz, and find strong agreement with a computational model. Equations from the PIV and PTV literature adapted for a scanning objective provide estimates of maximum measurable velocity. The technique allows for isosurface visualization of 3D particle motion and robust high spatial resolution velocity measurements without requiring a calibration step or reconstruction algorithms.
引用
收藏
页数:14
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