We present a novel Hybrid High-Order (HHO) discretization of fourth-order elliptic problems arising from the mechanical modeling of the bending behavior of Kirchhoff–Love plates, including the biharmonic equation as a particular case. The proposed HHO method supports arbitrary approximation orders on general polygonal meshes, and reproduces the key mechanical equilibrium relations locally inside each element. When polynomials of degree k ≥ 1 are used as unknowns, we prove convergence in hk+1 (with h denoting, as usual, the meshsize) in an energy-like norm. A key ingredient in the proof are novel approximation results for the energy projector on local polynomial spaces. Under biharmonic regularity assumptions, a sharp estimate in hk+3 is als...
International audienceWe devise and evaluate numerically Hybrid High-Order (HHO) methods for hyperel...
International audienceWe devise and analyze two-hybrid high-order (HHO) methods for the numerical ap...
International audienceWe devise and analyze two-hybrid high-order (HHO) methods for the numerical ap...
We present a novel Hybrid High-Order (HHO) discretization of fourth-order elliptic problems arising ...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
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 analyze two-hybrid high-order (HHO) methods for the numerical ap...
International audienceWe devise and analyze two-hybrid high-order (HHO) methods for the numerical ap...
We present a novel Hybrid High-Order (HHO) discretization of fourth-order elliptic problems arising ...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
International audienceWe present a novel Hybrid High-Order (HHO) discretization of fourth-order elli...
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 analyze two-hybrid high-order (HHO) methods for the numerical ap...
International audienceWe devise and analyze two-hybrid high-order (HHO) methods for the numerical ap...