Title of article
Computing unsteady compressible flows using Roe’s flux-difference splitting scheme on GPUs Original Research Article
Author/Authors
Michele Tuttafesta، نويسنده , , Gianpiero Colonna، نويسنده , , Giuseppe Pascazio، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2013
Pages
14
From page
1497
To page
1510
Abstract
A Roe’s flux-difference splitting scheme has been implemented using the NVIDIA CUDA architecture and has been applied to solve the two-dimensional compressible Euler equations. Different standard test cases have been considered in order to estimate the speed-up of GPU computing with respect to CPU calculation. A detailed description of the kernel configuration has been provided and a theoretical analysis of the GPU execution time as a function of the number of threads managed by the kernels is also reported. The loss of performance has been fully described consequent to the use of zero-copy memory. Significant performance improvements have been obtained by using a more recent GPU and CUDA Toolkit. A test case on multi-GPU architecture has been presented in the domain decomposition approach.
Keywords
CUDA GPU computing , Flux-difference splitting , 2D Riemann problem , Multi-GPU , CUDA kernel configuration
Journal title
Computer Physics Communications
Serial Year
2013
Journal title
Computer Physics Communications
Record number
1136569
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