We present a lattice Boltzmann model for charged leaky dielectric multiphase fluids in the context of electrified jet simulations, which are of interest for a number of production technologies including electrospinning. The role of nonlinear rheology on the dynamics of electrified jets is considered by exploiting the Carreau model for pseudoplastic fluids. We report exploratory simulations of charged droplets at rest and under a constant electric field, and we provide results for charged jet formation under electrospinning conditions.

Lauricella, M., Melchionna, S., Montessori, A., Pisignano, D., Pontrelli, G., Succi, S. (2018). Entropic lattice Boltzmann model for charged leaky dielectric multiphase fluids in electrified jets. PHYSICAL REVIEW. E, 97(3) [10.1103/PhysRevE.97.033308].

Entropic lattice Boltzmann model for charged leaky dielectric multiphase fluids in electrified jets

Montessori A.;Pontrelli G.;
2018-01-01

Abstract

We present a lattice Boltzmann model for charged leaky dielectric multiphase fluids in the context of electrified jet simulations, which are of interest for a number of production technologies including electrospinning. The role of nonlinear rheology on the dynamics of electrified jets is considered by exploiting the Carreau model for pseudoplastic fluids. We report exploratory simulations of charged droplets at rest and under a constant electric field, and we provide results for charged jet formation under electrospinning conditions.
Lauricella, M., Melchionna, S., Montessori, A., Pisignano, D., Pontrelli, G., Succi, S. (2018). Entropic lattice Boltzmann model for charged leaky dielectric multiphase fluids in electrified jets. PHYSICAL REVIEW. E, 97(3) [10.1103/PhysRevE.97.033308].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/399711
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