International audienceA numerical study of the parameters controlling the viscous penalty method is investigated to better set up Particle-Resolved Direct Numerical Simulations (PR-DNS) of particulate flows. Based on this analysis, improvements of the methods are proposed in order to reach an almost second order convergence in space. The viscous penalty method is validated in Stokes regime by simulating a uniform flow past a fixed isolated cylinder. Moreover, it is also utilized in moderate Reynolds number regime for a uniform flow past a square configuration of cylinder and compared in terms of friction factor to the well-known Ergun correlation
Particle-Resolved Direct Numerical Simulations has been performed using Implicit Tensorial Viscous p...
International audienceParticle-Resolved Direct Numerical Simulations has been performed using Implic...
The falling-ball viscometer is a device where a spherical particle falls along the axis of a circula...
A numerical study of the parameters controlling the viscous penalty method is investigated to better...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
Les simulations des écoulements diphasiques à l’échelle réelle de l’application nécessitent des modè...
Les simulations des écoulements diphasiques à l’échelle réelle de l’application nécessitent des modè...
International audienceDense fluid-particle flow occurs in many industrial applications, such as flui...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
Purpose – The purpose of this paper is to extend the penalty concept to treat partial slip, free sur...
The simulations of multiphase flows at real application scale need models for unclosed terms in macr...
The simulations of multiphase flows at real application scale need models for unclosed terms in macr...
International audienceParticle-Resolved Direct Numerical Simulations has been performed using Implic...
The falling-ball viscometer is a device where a spherical particle falls along the axis of a circula...
Particle-Resolved Direct Numerical Simulations has been performed using Implicit Tensorial Viscous p...
International audienceParticle-Resolved Direct Numerical Simulations has been performed using Implic...
The falling-ball viscometer is a device where a spherical particle falls along the axis of a circula...
A numerical study of the parameters controlling the viscous penalty method is investigated to better...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
Les simulations des écoulements diphasiques à l’échelle réelle de l’application nécessitent des modè...
Les simulations des écoulements diphasiques à l’échelle réelle de l’application nécessitent des modè...
International audienceDense fluid-particle flow occurs in many industrial applications, such as flui...
The direct numerical simulation of particle flows is investigated by a Lagrangian VOF approach and p...
Purpose – The purpose of this paper is to extend the penalty concept to treat partial slip, free sur...
The simulations of multiphase flows at real application scale need models for unclosed terms in macr...
The simulations of multiphase flows at real application scale need models for unclosed terms in macr...
International audienceParticle-Resolved Direct Numerical Simulations has been performed using Implic...
The falling-ball viscometer is a device where a spherical particle falls along the axis of a circula...
Particle-Resolved Direct Numerical Simulations has been performed using Implicit Tensorial Viscous p...
International audienceParticle-Resolved Direct Numerical Simulations has been performed using Implic...
The falling-ball viscometer is a device where a spherical particle falls along the axis of a circula...