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Steering and In-situ Visualization for Simulation of Seismic Wave Propagation on Graphics Cards

机译:图形卡上地震波传播仿真的转向和原位可视化

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Simulation of large scale seismic wave propagation is an important tool in seismology for efficient strong motion analysis and risk mitigation. Being particularly CPU-consuming, this three-dimensional problem has been early ported on graphics cards to improve the performance by several order of magnitude. Scientific visualization of data produced by these simulations is essential for a good comprehension of the physical phenomena involved. In the same time, post-petascale architectures demonstrates that the I/O turn to become a major performance bottleneck. This situation is worsened with GPU-based systems because of the gap between I/O bandwidth and computational capabilities. In this paper, we introduce a prototype of computational steering and in-situ visualization suitable for seismic wave propagation on hybrid architecture. We detail the overall architecture of the system we set up and comment on the parallel performance measured.
机译:大规模地震波传播的仿真是有效强劲运动分析和风险缓解的地震学中的重要工具。特别是CPU消费,这三维问题已经早期移植到显卡上,以通过几个级别提高性能。这些模拟产生的数据的科学可视化对于良好的理解所涉及的物理现象来说至关重要。同时,PetaScale架构表明I / O转向成为一个主要的性能瓶颈。由于I / O带宽与计算能力之间的差距,基于GPU的系统,这种情况恶化。本文介绍了适用于混合架构上的地震波传播的计算转向和原位可视化的原型。我们详细介绍了我们设置的系统的整体架构和评论测量的并行性能。

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