International audienceWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) methods to tackle the problem of the interaction of solids with an incompressible fluid flow, and its implementation on heterogeneous platforms based on data-parallel accelerators such as NVIDIA GPUs and the Intel Xeon Phi. We explain in detail the parallelization of these methods and describe a number of optimizations, mainly focusing on improving memory management and reducing the cost of host-accelerator communication. As previous research has consistently shown, pure LBM simulations are able to achieve good performance results on heterogeneous systems thanks to the high parallel efficiency of this method. Unfortunately, ...
National audienceThe popularization of graphic processing units (GPUs) has led to their extensive us...
Numerical analysts and programmers are currently facing a conceptual change in processor technology....
Accelerators are quickly emerging as the leading technology to further boost computing performances;...
International audienceWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immer...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
International audienceWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immer...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
AbstractWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (...
AbstractWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (...
Lattice Boltzmann Method (LBM) has shown great potential in fluid simulations, but performance issue...
Immersed boundary-lattice Boltzmann method (IB-LBM) has become a popular method for studying fluid-s...
The main contribution of the present work consists of several parallel approaches for grid refinemen...
National audienceThe popularization of graphic processing units (GPUs) has led to their extensive us...
National audienceThe popularization of graphic processing units (GPUs) has led to their extensive us...
Numerical analysts and programmers are currently facing a conceptual change in processor technology....
Accelerators are quickly emerging as the leading technology to further boost computing performances;...
International audienceWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immer...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
International audienceWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immer...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
We propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (IB) meth...
AbstractWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (...
AbstractWe propose a numerical approach based on the Lattice-Boltzmann (LBM) and Immersed Boundary (...
Lattice Boltzmann Method (LBM) has shown great potential in fluid simulations, but performance issue...
Immersed boundary-lattice Boltzmann method (IB-LBM) has become a popular method for studying fluid-s...
The main contribution of the present work consists of several parallel approaches for grid refinemen...
National audienceThe popularization of graphic processing units (GPUs) has led to their extensive us...
National audienceThe popularization of graphic processing units (GPUs) has led to their extensive us...
Numerical analysts and programmers are currently facing a conceptual change in processor technology....
Accelerators are quickly emerging as the leading technology to further boost computing performances;...