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- W2103203467 abstract "Abstract Separations of micron-sized particles are generally dominated by body forces and hydrodynamic effects, which must be explicitly included in any mechanistic models of such separations. Accommodating complex flows is an especially challenging component of such modeling, and this paper illustrates an effort to do so for the special case of a particle fractionation process performed in a rotating coiled tube. The separation is based on the combined effects of rotation and axial flow; the body force is thus centrifugal, while the complex hydrodynamics arise from the secondary flows that occur in addition to the axial convection in rotating curved tubes. The model is assembled in three stages. First, single-particle motion in a rotating tube is considered, and the effects of various parameters are elucidated. Next, these results are used in modeling the behavior of monodisperse sets of particles in order to account for a distribution of possible initial conditions. Finally, these results are used with ..." @default.
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- W2103203467 date "1991-08-01" @default.
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- W2103203467 title "Modeling of Particle Separations in Complex Flows" @default.
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- W2103203467 doi "https://doi.org/10.1080/01496399108050512" @default.
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