International audienceWe present a new continuum-based method for the realistic simulation of large-scale free-flowing granular materials. We derive a compact model for the rheology of the material, which accounts for the exact nonsmooth Drucker-Prager yield criterion combined with a varying volume fraction. Thanks to a semi-implicit time-stepping scheme and a careful spatial discretization of our rheology built upon the Material-Point Method, we are able to preserve at each time step the exact coupling between normal and tangential stresses, in a stable way. This contrasts with previous approaches which either regularize or linearize the yield criterion for implicit integration, leading to unrealistic behaviors or visible grid artifacts. R...
International audienceUnderstanding the flow of granular materials is of utmost importance for numer...
We present a discussion on how one can simulate sand as a continuum using elastoplasticity. We showe...
A three-dimensional nonlocal multiscale discrete-continuum model has been developed for modeling mec...
International audienceWe present a new continuum-based method for the realistic simulation of large-...
We propose an extension to the Material Point Method for the simulation of granular media. We model ...
We propose and numerically implement a constitutive framework for granular media that allows the mat...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
The main objective of this work lies in the development of a variational implicit Material Point Met...
The main objective of this work lies in the development of a variational implicit Material Point Met...
This doctoral thesis investigates and models the flows of granular materials numerically. It focuses...
Granular-fluid interactions appear in a variety of real-life scenarios ranging from immersed avalanc...
International audienceWe focus on the continuum simulation of dense granular flows, of which we note...
International audienceWe focus on the continuum simulation of dense granular flows, of which we note...
International audienceUnderstanding the flow of granular materials is of utmost importance for numer...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Catal...
International audienceUnderstanding the flow of granular materials is of utmost importance for numer...
We present a discussion on how one can simulate sand as a continuum using elastoplasticity. We showe...
A three-dimensional nonlocal multiscale discrete-continuum model has been developed for modeling mec...
International audienceWe present a new continuum-based method for the realistic simulation of large-...
We propose an extension to the Material Point Method for the simulation of granular media. We model ...
We propose and numerically implement a constitutive framework for granular media that allows the mat...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Ca...
The main objective of this work lies in the development of a variational implicit Material Point Met...
The main objective of this work lies in the development of a variational implicit Material Point Met...
This doctoral thesis investigates and models the flows of granular materials numerically. It focuses...
Granular-fluid interactions appear in a variety of real-life scenarios ranging from immersed avalanc...
International audienceWe focus on the continuum simulation of dense granular flows, of which we note...
International audienceWe focus on the continuum simulation of dense granular flows, of which we note...
International audienceUnderstanding the flow of granular materials is of utmost importance for numer...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Catal...
International audienceUnderstanding the flow of granular materials is of utmost importance for numer...
We present a discussion on how one can simulate sand as a continuum using elastoplasticity. We showe...
A three-dimensional nonlocal multiscale discrete-continuum model has been developed for modeling mec...