Christian F. Jan▀en
Christian F. Jan▀en
Altair Engineering
Verified email at - Homepage
Cited by
Cited by
Free surface flow simulations on GPGPUs using the LBM
C Jan▀en, M Krafczyk
Computers & Mathematics with Applications 61 (12), 3549-3563, 2011
A lattice Boltzmann approach for free-surface-flow simulations on non-uniform block-structured grids
C Janssen, M Krafczyk
Computers & Mathematics with Applications 59 (7), 2215-2235, 2010
On enhanced non-linear free surface flow simulations with a hybrid LBM-VOF model
CF Jan▀en, ST Grilli, M Krafczyk
Computers & Mathematics with Applications 65 (2), 211-229, 2013
Validation of the GPU-Accelerated CFD Solver elbe for Free Surface Flow Problems in Civil and Environmental Engineering
CF Jan▀en, D Mierke, M ▄berrŘck, S Gralher, T Rung
Computation 3 (3), 354-385, 2015
Efficient GPGPU implementation of a lattice Boltzmann model for multiphase flows with high density ratios
A Banari, C Jan▀en, ST Grilli, M Krafczyk
Computers & Fluids 93, 1-17, 2014
Scrutinizing lattice Boltzmann methods for direct numerical simulations of turbulent channel flows
M Gehrke, CF Jan▀en, T Rung
Computers & fluids 156, 247-263, 2017
Modeling of wave breaking andwave-structure interactions by coupling of fully nonlinear potential flow and lattice-Boltzmann models
CF Janssen, M Krafczyk, ST Grilli
ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-10-160, 2010
An efficient lattice Boltzmann multiphase model for 3D flows with large density ratios at high Reynolds numbers
A Banari, CF Jan▀en, ST Grilli
Computers & Mathematics with Applications 68 (12), 1819-1843, 2014
On the development of an efficient numerical ice tank for the simulation of fluid-ship-rigid-ice interactions on graphics processing units
CF Jan▀en, D Mierke, T Rung
Computers & fluids 155, 22-32, 2017
Wall-modeled lattice Boltzmann large-eddy simulation of neutral atmospheric boundary layers
H Asmuth, CF Jan▀en, H Olivares-Espinosa, S Ivanell
Physics of fluids 33 (10), 2021
A fast and rigorously parallel surface voxelization technique for GPU-accelerated CFD simulations
CF Jan▀en, N Koliha, T Rung
Communications in computational physics 17 (5), 1246-1270, 2015
Kinetic approaches for the simulation of non-linear free surface flow problems in civil and environmental engineering
C Jan▀en
Massively-parallel multi-GPU simulations for fast and accurate automotive aerodynamics
CA Niedermeier, CF Jan▀en, T Indinger
Proceedings of the 7th European Conference on Computational Fluid Dynamicsá…, 2018
The simulation of turbulent particle‐laden channel flow by the Lattice Boltzmann method
A Banari, Y Mauzole, T Hara, ST Grilli, CF Jan▀en
International journal for numerical methods in fluids 79 (10), 491-513, 2015
Numerical simulation of ship-ice interactions with physics engines under consideration of ice breaking
M Huisman, CF Jan▀en, T Rung, S Ehlers
ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-16-289, 2016
An efficient algorithm for the calculation of sub-grid distances for higher-order LBM boundary conditions in a GPU simulation environment
D Mierke, CF Jan▀en, T Rung
Computers & Mathematics with Applications 79 (1), 66-87, 2020
A fast numerical method for internal flood water dynamics to simulate water on deck and flooding scenarios of ships
CF Jan▀en, S Bengel, T Rung, H Dankowski
International Conference on Offshore Mechanics and Arctic Engineering 55393á…, 2013
Efficient simulations of long wave propagation and runup using a LBM approach on GPGPU hardware
CF Jan▀en, ST Grilli, M Krafczyk
ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-12-511, 2012
GPU-accelerated large-eddy simulation of ship-ice interactions
D Mierke, D Janssen, T Rung
MARINE VI: proceedings of the VI International Conference on Computationalá…, 2015
A rheological interface model and its space–time finite element formulation for fluid–structure interaction
A Legay, A Zilian, C Janssen
International Journal for Numerical Methods in Engineering 86 (6), 667-687, 2011
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