International audienceThis paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear elastic behaviors. To address the inherent limitations of finite element (FE) models, the discretization of the domain is simplified by removing the need to create polyhedral elements. The volumetric locking effect exhibited by incompressible materials in some linear FE models is also completely avoided. Our approach merely requires that the volume of the object be filled with a cloud of points. To minimize numerical errors, we construct a corotational formulation around the quadrature positions that is well suited for large displacements containing small deformations. The equations of motion are integrated in time foll...
Finite Element Method (FEM) has deservedly gained the reputation of the most powerful numerical meth...
International audienceWe present a new method for physically animating deformable shapes using finit...
International audienceWe present a new method for physically animating deformable shapes using finit...
This paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear...
International audienceThis paper proposes a fast, stable and accurate meshless method to simulate ge...
This paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear...
International audienceWe present a new type of deformable model which combines the realism of physic...
This thesis focuses on the interactive simulation of highly detailed deformable solids modelled with...
International audienceA new adaptive model for viscoelastic solids is presented. Unlike previous app...
In this paper, we articulate a meshless computational paradigm for the effective modeling, accurate ...
This thesis focuses on the interactive simulation of highly detailed deformable solids modelled with...
International audienceA new adaptive model for viscoelastic solids is presented. Unlike previous app...
This paper is a tutorial on how to implement a deformable solid simulation with collisions based off...
International audienceWe present a new method for physically animating deformable shapes using finit...
Finite Element Method (FEM) has deservedly gained the reputation of the most powerful numerical meth...
Finite Element Method (FEM) has deservedly gained the reputation of the most powerful numerical meth...
International audienceWe present a new method for physically animating deformable shapes using finit...
International audienceWe present a new method for physically animating deformable shapes using finit...
This paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear...
International audienceThis paper proposes a fast, stable and accurate meshless method to simulate ge...
This paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear...
International audienceWe present a new type of deformable model which combines the realism of physic...
This thesis focuses on the interactive simulation of highly detailed deformable solids modelled with...
International audienceA new adaptive model for viscoelastic solids is presented. Unlike previous app...
In this paper, we articulate a meshless computational paradigm for the effective modeling, accurate ...
This thesis focuses on the interactive simulation of highly detailed deformable solids modelled with...
International audienceA new adaptive model for viscoelastic solids is presented. Unlike previous app...
This paper is a tutorial on how to implement a deformable solid simulation with collisions based off...
International audienceWe present a new method for physically animating deformable shapes using finit...
Finite Element Method (FEM) has deservedly gained the reputation of the most powerful numerical meth...
Finite Element Method (FEM) has deservedly gained the reputation of the most powerful numerical meth...
International audienceWe present a new method for physically animating deformable shapes using finit...
International audienceWe present a new method for physically animating deformable shapes using finit...