[HTML][HTML] preCICE v2: A sustainable and user-friendly coupling library

G Chourdakis, K Davis, B Rodenberg… - Open Research …, 2022 - ncbi.nlm.nih.gov
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preCICE–a fully parallel library for multi-physics surface coupling

HJ Bungartz, F Lindner, B Gatzhammer, M Mehl… - Computers & …, 2016 - Elsevier
In the emerging field of multi-physics simulations, we often face the challenge to establish
new connections between physical fields, to add additional aspects to existing models, or to …

Space–time VMS method for flow computations with slip interfaces (ST-SI)

K Takizawa, TE Tezduyar, H Mochizuki… - … Models and Methods …, 2015 - World Scientific
We present the space–time variational multiscale (ST-VMS) method for flow computations
with slip interfaces (ST-SI). The method is intended for fluid–structure interaction (FSI) …

Multiscale space–time methods for thermo-fluid analysis of a ground vehicle and its tires

K Takizawa, TE Tezduyar, T Kuraishi - Mathematical Models and …, 2015 - World Scientific
We present the core and special multiscale space–time (ST) methods we developed for
thermo-fluid analysis of a ground vehicle and its tires. We also present application of these …

Advances in geometrical parametrization and reduced order models and methods for computational fluid dynamics problems in applied sciences and engineering …

F Salmoiraghi, F Ballarin, G Corsi, A Mola… - Proceedings of the …, 2016 - iris.sissa.it
Several problems in applied sciences and engineering require reduction techniques in
order to allow computational tools to be employed in the daily practice, especially in iterative …

OpenFOAM-preCICE: Coupling OpenFOAM with external solvers for multi-physics simulations

G Chourdakis, D Schneider… - OpenFOAM® …, 2023 - journal.openfoam.com
Multi-physics simulations, such as conjugate heat transfer or fluid-structure interaction, are
often constructed completely in OpenFOAM. However, they can also be formed by coupling …

Partitioned fluid-structure interaction on massively parallel systems

BW Uekermann - 2016 - mediatum.ub.tum.de
Today's multi-physics simulations suffer from a lack of either flexibility or scalability. Only
reconciling both will allow for translating the higher compute power of the forthcoming exa …

Improving the performance of the partitioned QN-ILS procedure for fluid–structure interaction problems: Filtering

R Haelterman, AEJ Bogaers, K Scheufele… - Computers & …, 2016 - Elsevier
Abstract The Quasi-Newton Inverse Least Squares method has become a popular method to
solve partitioned interaction problems. Its performance can be enhanced by using …

Advances in reduced order methods for parametric industrial problems in computational fluid dynamics

G Rozza, H Malik, N Demo, M Tezzele… - arxiv preprint arxiv …, 2018 - arxiv.org
Reduced order modeling has gained considerable attention in recent decades owing to the
advantages offered in reduced computational times and multiple solutions for parametric …

Quasi‐Newton waveform iteration for partitioned surface‐coupled multiphysics applications

B Rüth, B Uekermann, M Mehl, P Birken… - International Journal …, 2021 - Wiley Online Library
We present novel coupling schemes for partitioned multiphysics simulation that combine
four important aspects for strongly coupled problems: implicit coupling per time step, fast and …