International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperelastic materials undergoing finite deformations. The HHO methods use as discrete unknowns piece-wise polynomials of order k ≥ 1 on the mesh skeleton, together with cell-based polynomials that can be eliminated locally by static condensation. The discrete problem is written as the minimization of the broken nonlinear elastic energy where a local reconstruction of the displacement gradient is used. Two HHO methods are considered: a stabilized method where the gradient is reconstructed as a tensor-valued polynomial of order k and a stabilization is added to the discrete energy functional, and an unstabilized method which reconstructs a stable hig...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
In this thesis, we are interested in the devising of Hybrid High-Order (HHO) methods for nonlinear s...
In this thesis, we are interested in the devising of Hybrid High-Order (HHO) methods for nonlinear s...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for finite...
In this thesis, we are interested in the devising of Hybrid High-Order (HHO) methods for nonlinear s...
In this thesis, we are interested in the devising of Hybrid High-Order (HHO) methods for nonlinear s...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...
International audienceWe devise and evaluate numerically a Hybrid High-Order (HHO) method for increm...