The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (viscosity, density), particle properties (size, density) and boundary conditions (shear rate, confining pressure). Using computational fluid dynamics simulations coupled with molecular dynamics for granular flow, and exploring a broad range of the values of parameters, we show that the parameter space can be reduced to a single parameter that controls the packing fraction and effective friction coefficient. This control parameter is a modified inertial number that incorporates viscous effects
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
The shear behavior of granular materials immersed in a viscous fluid depends on fluid properties (vi...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
International audienceBy means of extensive coupled molecular dynamics–lattice Boltzmann simulations...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles andimmersed in ...
We analyze the shear flow of dense granular materials composed of circular particles and immersed in...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...