AbstractGraphics Processing Units (GPUs), originally developed for computer games, now provide computational power for scientific applications. In this paper, we develop a general purpose Lattice Boltzmann code that runs entirely on a single GPU. The results show that: (1) simple precision floating point arithmetic is sufficient for LBM computation in comparison to double precision; (2) the implementation of LBM on GPUs allows us to achieve up to about one billion lattice update per second using single precision floating point; (3) GPUs provide an inexpensive alternative to large clusters for fluid dynamics prediction
Computational Fluid Dynamics (CFD) simulations are aimed to reconstruct the reality of fluid motion ...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...
AbstractGraphics Processing Units (GPUs), originally developed for computer games, now provide compu...
Three-dimensional simulations of buoyancy-driven flow of two immiscible liquids are performed using ...
Three-dimensional simulations of buoyancy-driven flow of two immiscible liquids are performed using ...
Today, we are living a growing demand of larger and more efficient computational resources from the ...
Today, we are living a growing demand of larger and more efficient computational resources from the ...
In this paper, we describe the implementation of a multi-graphical processing unit (GPU) fluid flow ...
International audienceIn this paper, we describe the implementation of a multi-graphical processing ...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
In this paper, we describe the implementation of a multi-GPU fluid flow solver based on the lattice ...
International audienceIn this paper, we describe the implementation of a multi-graphical processing ...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
Computational Fluid Dynamics (CFD) simulations are aimed to reconstruct the reality of fluid motion ...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...
AbstractGraphics Processing Units (GPUs), originally developed for computer games, now provide compu...
Three-dimensional simulations of buoyancy-driven flow of two immiscible liquids are performed using ...
Three-dimensional simulations of buoyancy-driven flow of two immiscible liquids are performed using ...
Today, we are living a growing demand of larger and more efficient computational resources from the ...
Today, we are living a growing demand of larger and more efficient computational resources from the ...
In this paper, we describe the implementation of a multi-graphical processing unit (GPU) fluid flow ...
International audienceIn this paper, we describe the implementation of a multi-graphical processing ...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
In this paper, we describe the implementation of a multi-GPU fluid flow solver based on the lattice ...
International audienceIn this paper, we describe the implementation of a multi-graphical processing ...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
During the past two decades, the lattice Boltzmann method (LBM) has been increasingly acknowledged a...
Computational Fluid Dynamics (CFD) simulations are aimed to reconstruct the reality of fluid motion ...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...
Many-core processors, such as graphic processing units (GPUs), are promising platforms for intrinsic...