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Simulation of particle mixing in turbulent channel flow due to intrinsic fluid velocity fluctuation
Published 30 Nov 2010 in physics.flu-dyn, cond-mat.soft, cond-mat.stat-mech, and physics.comp-ph | (1011.6585v2)
Abstract: We combine a DEM simulation with a stochastic process to model the movement of spherical particles in a turbulent channel flow. With this model we investigate the mixing properties of two species of particles flowing through the channel. We find a linear increase of the mixing zone with the length of the pipe. Flows at different Reynolds number are studied. Below a critical Reynolds number at the Taylor microscale of around $R_{c} \approx 300$ the mixing rate is strongly dependent on the Reynolds number. Above $R_{c}$ the mixing rate stays nearly constant.
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