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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 …
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)
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) …
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
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 …
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 …
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 …
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
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 …
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 …
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
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 …
solve partitioned interaction problems. Its performance can be enhanced by using …
Advances in reduced order methods for parametric industrial problems in computational fluid dynamics
Reduced order modeling has gained considerable attention in recent decades owing to the
advantages offered in reduced computational times and multiple solutions for parametric …
advantages offered in reduced computational times and multiple solutions for parametric …
Quasi‐Newton waveform iteration for partitioned surface‐coupled multiphysics applications
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 …
four important aspects for strongly coupled problems: implicit coupling per time step, fast and …