activity
20232026
most citedAn enhanced single Gaussian point continuum finite element formulation using automatic differentiation

4 citations · 5 across the 8 of their papers we have counts for

collaborators
Showing cs.CEShow all

7 papers · 1 filter

cs.CE2026

Component-wise hyperreduction for nonlinear solid mechanics problems

Stephan Ritzert, Jannick Kehls, Erik Faust +3

Hyperreduced nonlinear solid-mechanics components can be generated offline and reused as transferable building blocks across different assemblies, boundary conditions, meshes, mate…

cs.CE2026

Reduced integration with scaled boundary parametrization for virtual elements at finite strains

Njomza Pacolli, Bjorn Sauren, Jannick Kehls +3

This contribution presents an alternative stabilization technique for the virtual element method (VEM) based on reduced integration combined with a scaled boundary parametrization.…

cs.CE2025

Autoencoder-based non-intrusive model order reduction in continuum mechanics

Jannick Kehls, Ellen Kuhl, Tim Brepols +2

We propose a non-intrusive, Autoencoder-based framework for reduced-order modeling in continuum mechanics. Our method integrates three stages: (i) an unsupervised Autoencoder compr…

cs.CE20251 cited

Multi-field decomposed hyper-reduced order modeling of damage-plasticity simulations

Jannick Kehls, Stephan Ritzert, Lars Breuer +3

This paper presents a multi-field decomposed approach for hyper-reduced order modeling to overcome the limitations of traditional model reduction techniques for gradient-extended d…

cs.CE20244 cited

An enhanced single Gaussian point continuum finite element formulation using automatic differentiation

Njomza Pacolli, Ahmad Awad, Jannick Kehls +4

This contribution presents an improved low-order 3D finite element formulation with hourglass stabilization using automatic differentiation (AD). Here, the former Q1STc formulation…

cs.CE2024

Component based model order reduction with mortar tied contact for nonlinear quasi-static mechanical problems

Stephan Ritzert, Jannick Kehls, Stefanie Reese +1

In this work, we present a model order reduction technique for nonlinear structures assembled from components.The reduced order model is constructed by reducing the substructures w…