The results of three-dimensional discrete element modeling (DEM) presented in this paper confirm the grain size and flow volume effects on granular flow mobility that were observed in laboratory experiments where batches of granular material traveled down a curved chute. Our numerical simulations are able to predict the correct relative mobility of the granular flows because they take into account particle interactions and, thus, the energy dissipated by the flows. The results illustrated here are obtained without prior fine tuning of the parameter values to get the desired output. The grain size and flow volume effects can be expressed by a linear relationship between scaling parameters where the finer the grain size or the smaller the flo...
The presence of a pore fluid is recognized to significantly increase the mobility of saturated over ...
Three-dimensional DEM simulations of size segregation in granular flows down chute are presented. Di...
The complexities in the processing behaviour of granular materials under different gravitational env...
The results of three-dimensional discrete element modeling (DEM) presented in this paper confirm the...
We have carried out new three-dimensional numerical simulations by using a discrete element method (...
Flows of angular rock fragments are released down a concave upward chute in the laboratory to study ...
AbstractGranular flows of angular rock fragments such as rock avalanches and dense pyroclastic flows...
Laboratory experiments have shown that the finer the grain size of granular flows of angular rock f...
Laboratory experiments have shown that the finer the grain size of granular flows of angular rock fr...
We simulate granular flows of angular rock fragments by means of a three-dimensional discrete elemen...
Rapid mass movements of rock fragments are among the most hazardous natural phenomena. The ability ...
Experiments are carried out by releasing angular rock fragments down a curved chute and by measurin...
Geophysical granular flows such as pyroclastic flows and rock avalanches kill people and damage prop...
Flows of angular rock fragments are released down a concave upward chute in the laboratory to study ...
Pyroclastic density currents (PDCs) are hot, density driven flows of gas, rock and ash generated dur...
The presence of a pore fluid is recognized to significantly increase the mobility of saturated over ...
Three-dimensional DEM simulations of size segregation in granular flows down chute are presented. Di...
The complexities in the processing behaviour of granular materials under different gravitational env...
The results of three-dimensional discrete element modeling (DEM) presented in this paper confirm the...
We have carried out new three-dimensional numerical simulations by using a discrete element method (...
Flows of angular rock fragments are released down a concave upward chute in the laboratory to study ...
AbstractGranular flows of angular rock fragments such as rock avalanches and dense pyroclastic flows...
Laboratory experiments have shown that the finer the grain size of granular flows of angular rock f...
Laboratory experiments have shown that the finer the grain size of granular flows of angular rock fr...
We simulate granular flows of angular rock fragments by means of a three-dimensional discrete elemen...
Rapid mass movements of rock fragments are among the most hazardous natural phenomena. The ability ...
Experiments are carried out by releasing angular rock fragments down a curved chute and by measurin...
Geophysical granular flows such as pyroclastic flows and rock avalanches kill people and damage prop...
Flows of angular rock fragments are released down a concave upward chute in the laboratory to study ...
Pyroclastic density currents (PDCs) are hot, density driven flows of gas, rock and ash generated dur...
The presence of a pore fluid is recognized to significantly increase the mobility of saturated over ...
Three-dimensional DEM simulations of size segregation in granular flows down chute are presented. Di...
The complexities in the processing behaviour of granular materials under different gravitational env...