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- W2007341502 abstract "In this study, 85 μm copper spheres are suspended electrostatically against gravitational forces and are pneumatically transported horizontally in a parallel plate flow system of 1 by 5 cm cross section. Reynolds numbers fall into the ranges Rec = 0 → 1870, based on hydraulic diameter of duct, and Rep < 13 for the copper particles, based on the particle diameter and relative velocity. The applied electric field strength (to 8.6 kV/cm) and the gas throughput independently control the pneumatic transport of solids below the saltation velocity. Particle interactions with the electric field, the fluid, and the wall are theoretically described. As a result, it is estimated that particles are in a state of rotational non-slippage with the walls and that the effective multiparticle drag is that of a single sphere. A particle slip flow velocity exists at the walls. This kind of study is expected to be significant in giving new information on particle drag under controlled conditions of particle motion at low particle and duct Reynolds numbers and is potentially applicable as an aid in pneumatic transport where gas flow below the saltation velocity is required. Electrostatic support is readily extended to other semi-insulating materials such as glass or coal." @default.
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- W2007341502 date "1978-09-01" @default.
- W2007341502 modified "2023-10-14" @default.
- W2007341502 title "Electrically augmented pneumatic transport of copper spheres at low particle and duct reynolds numbers" @default.
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- W2007341502 doi "https://doi.org/10.1016/0304-3886(78)90018-9" @default.
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