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- W1977062783 abstract "Abstract The motion of descending glass beads (10 mm in mean diameter) in water was simulated in an hourglass-like tube using the threedimensional distinct element method (DEM). The fluid flow is postulated to be an axisymmetric laminar flow, owing to the predominance of radial and longitudinal components. The fluid phase was solved by the SIMPLE scheme. Conventional (linear and non-linear) DEM models indicate that the elements must exert tension on one another just before separating. This is in conflict with the expected shape of a load-displacement loop for an element moving at a slow rate and with damping energy loss depending on its velocity. The untenability of these models has been excluded by adopting the Hunt model for simulation. The coefficients of interparticle and particle—wall friction were evaluated in water. The overall motion of the particles in water is satisfactorily simulated by the DEM." @default.
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- W1977062783 date "1997-12-01" @default.
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- W1977062783 title "Simulation of descending particles in water by the distinct element method" @default.
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- W1977062783 doi "https://doi.org/10.1016/s0032-5910(97)03293-2" @default.
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