Publication | Closed Access
Lattice Boltzmann model for Coulomb-driven flows in dielectric liquids
107
Citations
51
References
2016
Year
Quantum LiquidElectrical EngineeringElectrohydrodynamicsEngineeringPhysicsNatural SciencesFluid MechanicsCoupled Navier-stokes EquationsApplied PhysicsDielectric LiquidsTransport PhenomenaDielectric LiquidMultiphase FlowSimple LiquidUnipolar Charge InjectionMultiscale Modeling
In this paper, we developed a unified lattice Boltzmann model (LBM) to simulate electroconvection in a dielectric liquid induced by unipolar charge injection. Instead of solving the complex set of coupled Navier-Stokes equations, the charge conservation equation, and the Poisson equation of electric potential, three consistent lattice Boltzmann equations are formulated. Numerical results are presented for both strong and weak injection regimes, and different scenarios for the onset and evolution of instability, bifurcation, and chaos are tracked. All LBM results are found to be highly consistent with the analytical solutions and other numerical work.
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