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Wake-driven dynamics of finite-sized buoyant spheres in turbulence

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arxiv 1507.08943 v2 pith:5675UDWU submitted 2015-07-31 physics.flu-dyn

classification physics.flu-dyn
keywords particleturbulencedynamicsmodelsbackbuoyantfindfinite-sized
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Particles suspended in turbulent flows are affected by the turbulence and at the same time act back on the flow. The resulting coupling can give rise to rich variability in their dynamics. Here we report experimental results from an investigation of finite-sized buoyant spheres in turbulence. We find that even a marginal reduction in the particle's density from that of the fluid can result in strong modification of its dynamics. In contrast to classical spatial filtering arguments and predictions of particle models, we find that the particle acceleration variance increases with size. We trace this reversed trend back to the growing contribution from wake-induced forces, unaccounted for in current particle models in turbulence. Our findings highlight the need for improved multi-physics based models that account for particle wake effects for a faithful representation of buoyant-sphere dynamics in turbulence.

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