An automated single-particle tracker: application to characterization of non-azimuthal motion in Couette flows at low Reynolds number

We describe an experiment that allows us to record 3-dimensional trajectories of single particles in Couette shear flows, at low Reynolds number. The core of the apparatus is a Couette cell with transparent contra-rotating cylinders. Fluorescent spherical particles are used as tracers. A single trac...

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Veröffentlicht in:Experiments in fluids 2011-06, Vol.50 (6), p.1559-1570
Hauptverfasser: Blaj, O., Merzeau, P., Snabre, P., Pouligny, B.
Format: Artikel
Sprache:eng
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Zusammenfassung:We describe an experiment that allows us to record 3-dimensional trajectories of single particles in Couette shear flows, at low Reynolds number. The core of the apparatus is a Couette cell with transparent contra-rotating cylinders. Fluorescent spherical particles are used as tracers. A single tracer is imaged onto a webcam, equipped with a home-made autofocus system. For a given average shear rate, tracking of an individual tracer is performed automatically by driving the amount of contra-rotation between both cylinders and the position of the webcam. The performance of the tracker is illustrated through examples of trajectories of neutrally buoyant tracers in a Newtonian fluid. The setup is mostly aimed at characterizing complex flows in non-colloidal concentrated suspensions and wet granular materials. We show examples of 3d trajectories in a dense suspension of 200 μm spherical grains, revealing details of the short-scale diffusive-like particle motion, together with flow localization and large-scale non-azimuthal flow patterns.
ISSN:0723-4864
1432-1114
DOI:10.1007/s00348-010-1013-y