Large spheres motion in a non homogeneous turbulent flow
arXiv:1309.2129 · doi:10.1088/1367-2630/16/1/013053
Abstract
We investigate the dynamics of very large particles freely advected in a turbulent von Karman flow. Contrary to other experiments for which the particle dynamics is generally studied near the geometrical center of the flow, we track the particles in the whole experiment volume. We observe a strong influence of the mean structure of the flow that generates an unexpected large-scale sampling effect for the larger particles studied; contrary to neutrally buoyant particles of smaller yet finite sizes that exhibit no preferential concentration in homogeneous and isotropic turbulence (Fiabane et al., Phys. Rev. E 86(3), 2012). We find that particles whose diameter approaches the flow integral length scale explore the von Karman flow non-uniformly, with a higher probability to move in the vicinity of two tori situated near the poloidal neutral lines. This preferential sampling is quite robust with respect to changes of any varied parameters: Reynolds number, particle density and particle surface roughness.
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Cited by in corpus (7)
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- Stochastic dynamics of particles trapped in turbulent flows
- Clustering in laboratory and numerical turbulent swirling flows
- Bifurcation induced by the aspect ratio in a turbulent Von-Kármán swirling flow