The proper generalized decomposition for the simulation of delamination using cohesive zone model
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Publication:2952561
DOI10.1002/nme.4732zbMath1352.74484OpenAlexW1943731490MaRDI QIDQ2952561
S. Metoui, Frédéric Dau, Ivan Iordanoff, Amine Ammar, Etienne Pruliere
Publication date: 30 December 2016
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/nme.4732
delaminationcohesive zone modelcomposite laminatesproper generalized decompositioninterface fracture
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Cites Work
- Recent advances and new challenges in the use of the proper generalized decomposition for solving multidimensional models
- Cohesive-zone-model formulation and implementation using the symmetric Galerkin boundary element method for homogeneous solids
- Advanced simulation of models defined in plate geometries: 3D solutions with 2D computational complexity
- On the deterministic solution of multidimensional parametric models using the proper generalized decomposition
- The LATIN multiscale computational method and the proper generalized decomposition
- A new family of solvers for some classes of multidimensional partial differential equations encountered in kinetic theory modelling of complex fluids. II: Transient simulation using space-time separated representations
- A new family of solvers for some classes of multidimensional partial differential equations encountered in kinetic theory modeling of complex fluids
- Generalized spectral decomposition for stochastic nonlinear problems
- On a multiscale computational strategy with time and space homogenization for structural mechanics.
- Generalized spectral decomposition method for solving stochastic finite element equations: invariant subspace problem and dedicated algorithms
- Finite element interface models for the delamination analysis of laminated composites: mechanical and computational issues
- Proper generalized decomposition of time-multiscale models
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