19 citations · 34 across the 5 of their papers we have counts for
5 papers · 2 filters
Digital Blood in Massively Parallel CPU/GPU Systems for the Study of Platelet Transport
Christos Kotsalos, Jonas Latt, Joel Beny +1
We propose a highly versatile computational framework for the simulation of cellular blood flow focusing on extreme performance without compromising accuracy or complexity. The too…
Efficient supersonic flows through high-order guided equilibrium with lattice Boltzmann
Jonas Latt, Christophe Coreixas, Joel Beny +1
A double-distribution-function based lattice Boltzmann method (DDF-LBM) is proposed for the simulation of polyatomic gases in the supersonic regime. The model relies on an extended…
Comprehensive comparison of collision models in the lattice Boltzmann framework: Theoretical investigations
C. Coreixas, B. Chopard, J. Latt
Over the last decades, several types of collision models have been proposed to extend the validity domain of the lattice Boltzmann method (LBM), each of them being introduced in it…
Efficient LBM on GPUs for dense moving objects using immersed boundary condition
Joel Beny, Jonas Latt
There exists an increasing interest for using immersed boundary methods (IBMs) (Peskin 2000) to model moving objects in computational fluid dynamics. Indeed, this approach is parti…
Bridging the computational gap between mesoscopic and continuum modeling of red blood cells for fully resolved blood flow
Christos Kotsalos, Jonas Latt, Bastien Chopard
We present a computational framework for the simulation of blood flow with fully resolved red blood cells (RBCs) using a modular approach that consists of a lattice Boltzmann solve…