The jamming transition in granular materials is well-known for exhibiting hysteresis, wherein the level of shear stress required to trigger flow is larger than that below which flow stops. Although such behavior is typically modeled as a simple non-monotonic flow rule, the rheology of granular materials is also nonlocal due to cooperativity at the grain scale, leading for instance to increased strengthening of the flow threshold as system size is reduced. We investigate how these two effects – hysteresis and nonlocality – couple with each other by incorporating non-monotonicity of the flow rule into the nonlocal granular fluidity (NGF) model, a nonlocal constitutive model for granular flows. By artificially tuning the strength of nonlocal d...
© Copyright © 2019 Kamrin. This paper reviews the emergence of non-local flow phenomena in granular ...
International audienceA non-local theory is proposed to model dense granular flows. The idea is to d...
In this study, we investigate the influence of material properties on the mobility of granular flow ...
A recently proposed nonlocal rheology for dense granular flow, based on the concept of nonlocal gran...
International audienceThe aim of this article is to discuss the concepts of non-local rheology and f...
Flowing granular materials often abruptly arrest if not driven by sufficient applied stresses. Such ...
Dense granular materials display a complicated set of flow properties, which differentiate them from...
Dense granular materials display complicated deformation phenomenology, which differentiate them fro...
Recent dense granular flow experiments have shown that shear deformation in one region of a granular...
ranular materials have a strange propensity to behave as either a complex media or a simple media de...
Granular materials belong to the class of amorphous athermal systems, like foams, emulsion or suspen...
International audienceThe flow of dry and wet granular media is investigated in a Couette geometry u...
The particle-size dependence of the flow of a collection of dry grains is easily seen in several con...
The rheology of dense granular flows is studied numerically in a shear cell controlled at constant p...
Motivated by experimental observations of apparent non-locality in the mechanical response of granul...
© Copyright © 2019 Kamrin. This paper reviews the emergence of non-local flow phenomena in granular ...
International audienceA non-local theory is proposed to model dense granular flows. The idea is to d...
In this study, we investigate the influence of material properties on the mobility of granular flow ...
A recently proposed nonlocal rheology for dense granular flow, based on the concept of nonlocal gran...
International audienceThe aim of this article is to discuss the concepts of non-local rheology and f...
Flowing granular materials often abruptly arrest if not driven by sufficient applied stresses. Such ...
Dense granular materials display a complicated set of flow properties, which differentiate them from...
Dense granular materials display complicated deformation phenomenology, which differentiate them fro...
Recent dense granular flow experiments have shown that shear deformation in one region of a granular...
ranular materials have a strange propensity to behave as either a complex media or a simple media de...
Granular materials belong to the class of amorphous athermal systems, like foams, emulsion or suspen...
International audienceThe flow of dry and wet granular media is investigated in a Couette geometry u...
The particle-size dependence of the flow of a collection of dry grains is easily seen in several con...
The rheology of dense granular flows is studied numerically in a shear cell controlled at constant p...
Motivated by experimental observations of apparent non-locality in the mechanical response of granul...
© Copyright © 2019 Kamrin. This paper reviews the emergence of non-local flow phenomena in granular ...
International audienceA non-local theory is proposed to model dense granular flows. The idea is to d...
In this study, we investigate the influence of material properties on the mobility of granular flow ...