We construct a cut finite element method for the membrane elasticity problem on an embedded mesh using tangential differential calculus, i.e., with the equilibrium equations pointwise projected onto the tangent plane of the surface to create a pointwise planar problem in the tangential direction. Both free membranes and membranes coupled to 3D elasticity are considered. The discretization of the membrane comes from a Galerkin method using the restriction of 3D basis functions (linear or trilinear) to the surface representing the membrane. In the case of coupling to 3D elasticity, we view the membrane as giving additional stiffness contributions to the standard stiffness matrix resulting from the discretization of the three-dimensional conti...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
Biomembranes adopt varying morphologies that are vital to cellular functions. Many studies use compu...
A justification of the two-dimensional nonlinear “membrane” equations for a plate made of a Saint Ve...
We construct a cut finite element method for the membrane elasticity problem on an embedded mesh usi...
A Galerkin finite element method for the membrane elasticity problem on a meshed surface is construc...
We develop a finite element method for a large deformation membrane elasticity problem on meshed cur...
International audienceMembrane theory may be regarded as a special case of the Cosserat theory of el...
The smooth DMS-FEM, recently proposed by the authors, is extended and applied to the geometrically n...
The paper presents a non-linear finite element procedure for analysis of membrane structures. A four...
The purpose of this thesis is to improve numerical simulations of surface problems. Two novel comput...
We present a parametric finite element approximation of a fluidic membrane whose evolution is govern...
Form-finding of minimal surface membranes is investigated in this paper. A curved quadrilateral fini...
Membranes have many engineering applications due to their light weight and low construction cost, as...
International audienceThis paper presents theoretical and numerical developments of finite elements ...
International audienceSimulations of biomembranes have gained an increasing interest in the past yea...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
Biomembranes adopt varying morphologies that are vital to cellular functions. Many studies use compu...
A justification of the two-dimensional nonlinear “membrane” equations for a plate made of a Saint Ve...
We construct a cut finite element method for the membrane elasticity problem on an embedded mesh usi...
A Galerkin finite element method for the membrane elasticity problem on a meshed surface is construc...
We develop a finite element method for a large deformation membrane elasticity problem on meshed cur...
International audienceMembrane theory may be regarded as a special case of the Cosserat theory of el...
The smooth DMS-FEM, recently proposed by the authors, is extended and applied to the geometrically n...
The paper presents a non-linear finite element procedure for analysis of membrane structures. A four...
The purpose of this thesis is to improve numerical simulations of surface problems. Two novel comput...
We present a parametric finite element approximation of a fluidic membrane whose evolution is govern...
Form-finding of minimal surface membranes is investigated in this paper. A curved quadrilateral fini...
Membranes have many engineering applications due to their light weight and low construction cost, as...
International audienceThis paper presents theoretical and numerical developments of finite elements ...
International audienceSimulations of biomembranes have gained an increasing interest in the past yea...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
Biomembranes adopt varying morphologies that are vital to cellular functions. Many studies use compu...
A justification of the two-dimensional nonlinear “membrane” equations for a plate made of a Saint Ve...