Influence of weak electrostatic charges and secondary flows on pneumatic powder transport
Holger Grosshans

TL;DR
This study uses direct numerical simulations to explore how weak electrostatic charges and secondary flows influence particle transport in pneumatic systems, revealing that secondary flows can dampen electrostatic effects and alter particle distribution.
Contribution
It provides new insights into the combined effects of secondary flows and electrostatic forces on particle dynamics in pneumatic conveying, using detailed DNS with coupled phases.
Findings
Secondary flows dampen electrostatic effects on particles.
Vortical secondary flows enhance cross-sectional particle mobility.
Electrostatic forces increase particle-wall concentration and velocity correlation.
Abstract
The dynamics of the transported powder determines the functionality and safety of pneumatic conveying systems. The relation between the carrier gas flow, induced by the flown-through geometry, and the powder flow pattern is not clear yet for electrostatically charged particles. This paper highlights the influence of relatively minor cross-sectional secondary flows and electrostatic forces on the concentration and dynamics of the particles. To this end, direct numerical simulations (DNS) capture the interaction of the continuous and dispersed phases by a four-way coupled Eulerian-Lagrangian strategy. The transport of weakly charged particles in channel flows, where turbopheresis defines the particle concentration, is compared to duct flows, where additional cross-sectional vortices form. For both geometries the Stokes number () and the electrical Stokes number…
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Taxonomy
TopicsGranular flow and fluidized beds · Particle Dynamics in Fluid Flows · Aerosol Filtration and Electrostatic Precipitation
