3 papers
physics.comp-ph2026
Sequential Subspace Mode Adaptation for the Reduced-Order Homogenization of Dissipative Microstructures using E3C Hyper-Reduction
Hauke Goldbeck, Stephan Wulfinghoff
Three-dimensional inelastic computational homogenization of complex engineering components requires a multitude of nonlinear microstructural simulations, making it computationally…
physics.comp-ph2025
Computational Crystal Plasticity Homogenization using Empirically Corrected Cluster Cubature (E3C) Hyper-Reduction
Stephan Wulfinghoff
The computational homogenization of elastoplastic polycrystals is a challenging task due to the huge number of grains required, their complicated interactions and due to the comple…
physics.comp-ph2025
Computational Homogenization in 3D Magnetostatics using E3C Hyper-Reduction
Hauke Goldbeck, Stephan Wulfinghoff
The recently published hyper-reduction method "Empirically Corrected Cluster Cubature" (E3C) is for the first time applied in three dimensions (here magnetostatics). The method is…