We develop a finite element method for a large deformation membrane elasticity problem on meshed curved surfaces using a tangential differential calculus approach that avoids the use of classical differential geometric methods. The method is also applied to form finding problems
International audienceThis paper presents theoretical and numerical developments of finite elements ...
The purpose of this thesis is to improve numerical simulations of surface problems. Two novel comput...
The obstacle problem consists in computing equilibrium shapes of elastic membranes in contact with r...
Tangential differential calculus and the finite element modeling of a large deformation elastic memb...
We construct a cut finite element method for the membrane elasticity problem on an embedded mesh usi...
The purpose of this thesis is to further develop numerical methods for solving surface problems by u...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
New results are presented for the nite element analysis of wrinkling in curved elastic membranes und...
A Galerkin finite element method for the membrane elasticity problem on a meshed surface is construc...
We employ surface differential calculus to derive models for Kirchhoff plates including in-plane mem...
Form-finding of minimal surface membranes is investigated in this paper. A curved quadrilateral fini...
PhDMechanicsUniversity of Michigan, Horace H. Rackham School of Graduate Studieshttp://deepblue.lib....
Membranes have many engineering applications due to their light weight and low construction cost, as...
The paper proposes a method for analyzing large deformation of membrane structures. It is characteri...
An elastic-plastic finite element formulation is presented for three dimensional deformation analysi...
International audienceThis paper presents theoretical and numerical developments of finite elements ...
The purpose of this thesis is to improve numerical simulations of surface problems. Two novel comput...
The obstacle problem consists in computing equilibrium shapes of elastic membranes in contact with r...
Tangential differential calculus and the finite element modeling of a large deformation elastic memb...
We construct a cut finite element method for the membrane elasticity problem on an embedded mesh usi...
The purpose of this thesis is to further develop numerical methods for solving surface problems by u...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
New results are presented for the nite element analysis of wrinkling in curved elastic membranes und...
A Galerkin finite element method for the membrane elasticity problem on a meshed surface is construc...
We employ surface differential calculus to derive models for Kirchhoff plates including in-plane mem...
Form-finding of minimal surface membranes is investigated in this paper. A curved quadrilateral fini...
PhDMechanicsUniversity of Michigan, Horace H. Rackham School of Graduate Studieshttp://deepblue.lib....
Membranes have many engineering applications due to their light weight and low construction cost, as...
The paper proposes a method for analyzing large deformation of membrane structures. It is characteri...
An elastic-plastic finite element formulation is presented for three dimensional deformation analysi...
International audienceThis paper presents theoretical and numerical developments of finite elements ...
The purpose of this thesis is to improve numerical simulations of surface problems. Two novel comput...
The obstacle problem consists in computing equilibrium shapes of elastic membranes in contact with r...