We study the rheological properties of a granular suspension subject to constant shear stress by constant volume molecular dynamics simulations. We derive the system ‘‘flow diagram’’ in the volume fraction or stress plane (, F): at low the flow is disordered, with the viscosity obeying a Bagnold-like scaling only at small F and diverging as the jamming point is approached; if the shear stress is strong enough, at higher an ordered flow regime is found, the order-disorder transition being marked by a sharp drop of the viscosity. A broad jamming region is also observed where, in analogy with the glassy region of thermal systems, slow dynamics followed by kinetic arrest occurs when the ordering transition is prevented
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 immersed in a v...
We analyze the shear flow of dense granular materials composed of circular particles immersed in a v...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We discuss molecular dynamics simulations of a granular suspension driven in a channel by an embeddi...
Sheared granular suspensions can either flow or be jammed. They show as well a 'melting' transition:...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
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 immersed in a v...
We analyze the shear flow of dense granular materials composed of circular particles immersed in a v...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We study the rheological properties of a granular suspension subject to constant shear stress by con...
We discuss molecular dynamics simulations of a granular suspension driven in a channel by an embeddi...
Sheared granular suspensions can either flow or be jammed. They show as well a 'melting' transition:...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
By detailed Molecular Dynamics we investigate the rheology of granular suspensions driven through a ...
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 immersed in a v...
We analyze the shear flow of dense granular materials composed of circular particles immersed in a v...