A novel scanning PIV technique is proposed. Three dimensional information is acquired by oscillating the target sample over a fixed focal plane. In this contribution we describe the experimental setup and we study the performance of the technique by reconstructing two-dimensional profiles of typical Hagen-Poiseuille pressure driven flows for 0.5-1 μm particles. The technique is then applied to reconstruct the 3D trajectory of a 5 μm particle in an acoustic flow.
Galand, Q, Gelin, P, Srivastava, K, Blinder, D, Schelkens, P & de Malsche, W 2020, Development of a scanning PIV technique for 3D characterization of flows in microchannels. in MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences. MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences, Chemical and Biological Microsystems Society, pp. 569-570, 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2020, Virtual, Online, 4/10/20.
Galand, Q., Gelin, P., Srivastava, K., Blinder, D., Schelkens, P., & de Malsche, W. (2020). Development of a scanning PIV technique for 3D characterization of flows in microchannels. In MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences (pp. 569-570). (MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences). Chemical and Biological Microsystems Society.
@inproceedings{24c37cfd6b0a4702b16a42b6cd975daa,
title = "Development of a scanning PIV technique for 3D characterization of flows in microchannels",
abstract = "A novel scanning PIV technique is proposed. Three dimensional information is acquired by oscillating the target sample over a fixed focal plane. In this contribution we describe the experimental setup and we study the performance of the technique by reconstructing two-dimensional profiles of typical Hagen-Poiseuille pressure driven flows for 0.5-1 μm particles. The technique is then applied to reconstruct the 3D trajectory of a 5 μm particle in an acoustic flow.",
keywords = "3D Particle Image Velocimetry, Fluorescence Microscopy",
author = "Quentin Galand and Pierre Gelin and Ketki Srivastava and David Blinder and Peter Schelkens and {de Malsche}, Wim",
year = "2020",
month = jan,
day = "1",
language = "English",
series = "MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences",
publisher = "Chemical and Biological Microsystems Society",
pages = "569--570",
booktitle = "MicroTAS 2020 - 24th International Conference on Miniaturized Systems for Chemistry and Life Sciences",
note = "24th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2020 ; Conference date: 04-10-2020 Through 09-10-2020",
}