We report on numerical simulations of a vibrated granular bed including the effect of the ambient air, generating the famous Faraday heaps known from experiment. A detailed analysis of the forces shows that the heaps are formed and stabilized by the airflow through the bed while the gap between bed and vibrating bottom is growing, confirming the pressure gradient mechanism found experimentally by Thomas and Squires [Phys. Rev. Lett. 81, 574 (1998)], with the addition that the airflow is partly generated by isobars running parallel to the surface of the granular bed. Importantly, the simulations also explain the heaping instability of the initially flat surface and the experimentally observed coarsening of a number of small heaps into a larg...
A granular instability driven by gravity is studied experimentally and numerically. The instability ...
A prefluidized sand bed consisting of fine particles compactifies when it is subjected to a shock. W...
We have investigated by numerical simulation the density segregation of fine equal-sized bronze and ...
We report on numerical simulations of a vibrated granular bed including the effect of the ambient ai...
We report on numerical simulations of a vibrated granular bed including the effect of the ambient ai...
When a layer of granular material is vertically shaken, the surface spontaneously breaks up in a lan...
When a layer of granular material is vertically shaken, the surface spontaneously breaks up in a lan...
Granular materials can be encountered everywhere and are very important in industry. The first step ...
When a 6-mm layer of fine sand with an average grain size of 40 µm is poured into a cylindrical cont...
Granular dynamics simulations have been carried out of vertical feed two-dimensional heap formation ...
Granular matter subject to vibration is found to display a wide range of interesting phenomena, and ...
Granular material is ubiquitous in our everyday lives. For example, in nature the dynamics of granul...
When a heavy sphere is dropped onto a bed of loose, fine sand, a remarkable phenomenon occurs: a lar...
Metal disks of different size and density were placed at the bottom of a bed of monodisperse granula...
In this paper we report experiments where we shear granular rods in split-bottom geometries, and fin...
A granular instability driven by gravity is studied experimentally and numerically. The instability ...
A prefluidized sand bed consisting of fine particles compactifies when it is subjected to a shock. W...
We have investigated by numerical simulation the density segregation of fine equal-sized bronze and ...
We report on numerical simulations of a vibrated granular bed including the effect of the ambient ai...
We report on numerical simulations of a vibrated granular bed including the effect of the ambient ai...
When a layer of granular material is vertically shaken, the surface spontaneously breaks up in a lan...
When a layer of granular material is vertically shaken, the surface spontaneously breaks up in a lan...
Granular materials can be encountered everywhere and are very important in industry. The first step ...
When a 6-mm layer of fine sand with an average grain size of 40 µm is poured into a cylindrical cont...
Granular dynamics simulations have been carried out of vertical feed two-dimensional heap formation ...
Granular matter subject to vibration is found to display a wide range of interesting phenomena, and ...
Granular material is ubiquitous in our everyday lives. For example, in nature the dynamics of granul...
When a heavy sphere is dropped onto a bed of loose, fine sand, a remarkable phenomenon occurs: a lar...
Metal disks of different size and density were placed at the bottom of a bed of monodisperse granula...
In this paper we report experiments where we shear granular rods in split-bottom geometries, and fin...
A granular instability driven by gravity is studied experimentally and numerically. The instability ...
A prefluidized sand bed consisting of fine particles compactifies when it is subjected to a shock. W...
We have investigated by numerical simulation the density segregation of fine equal-sized bronze and ...