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Lattice Boltzmann model for predicting the deposition of inertial particles transported by a turbulent flow
Institution:1. Centre National de la Recherche Scientifique, LPP UMR 7648, Ecole Polytechnique - Université Pierre et Marie Curie Paris VI - Observatoire de Paris, Route de Saclay Palaiseau 91128, France;2. Université d’Orléans, Observatoire des Sciences de l’Univers en région Centre, UMS 3116, Centre Nationale de la Recherche Scientifique, LPC2E UMR 7328, 3A Av. de la Recherche Scientifique, Orléans 45071, France;3. Uppsala Universitet, Institutet för Rymdfysik, Ångströmlaboratoriet, Lägerhyddsvägen 1, Låda 537, Uppsala 751 21, Sverige;1. CarMeN Laboratory, INRA, UMR1397, Université Lyon 1, INSERM U1060, INSA-Lyon, F-69621 Villeurbanne, France;2. UMR1253 Science et Technologie du Lait et de l''?uf, AGROCAMPUS OUEST, INRA, F-35000 Rennes, France;3. UMR1331 Toxalim, Group of Neuro-Gastroenterology and Nutrition, INRA, F-31027 Toulouse, France
Abstract:Deposition of inertial solid particles transported by turbulent flows is modelled in a framework of a statistical approach based on the particle velocity Probability Density Function (PDF). The particle-turbulence interaction term is closed in the kinetic equation by a model widely inspired from the famous BGK model of the kinetic theory of rarefied gases. A Gauss-Hermite Lattice Boltzmann model is used to solve the closed kinetic equation involving the turbulence effect. The Lattice Boltzmann model is used for the case of the deposition of inertial particles transported by a homogeneous isotropic turbulent flows. Even if the carrier phase is homogeneous and isotropic, the presence of the wall coupled with particle-turbulence interactions leads to inhomogeneous particle distribution and non-equilibrium particle fluctuating motion. Despite these complexities the predictions of the Lattice Boltzmann model are in very good accordance with random-walk simulations. More specifically the mean particle velocity, the r.m.s. particle velocity and the deposition rate are all well predicted by the proposed Lattice Boltzmann model.
Keywords:Lattice Boltzmann  Kinetic approach  Particle-turbulence interaction  Deposition
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