兆级粒子加速器模拟的高级可视化技术

K. Ma, G. Schussman, Brett Wilson, K. Ko, J. Qiang, R. Ryne
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引用次数: 38

摘要

本文介绍了两种新的硬件辅助渲染技术,用于下一代加速器设计的数值建模产生的万亿级数据的交互式可视化。第一种技术基于混合渲染方法,使粒子束动力学建模的大规模粒子数据的交互式探索成为可能。第二种技术基于紧凑的纹理增强表示,利用商品图形卡的先进特性,实现对加速器设计中开放结构的反射和传输特性建模所产生的非常密集和复杂的电磁场的感知有效可视化。由于整个加速器建模项目的协作性质,所开发的可视化技术既适用于桌面可视化设置,也适用于远程可视化设置。我们已经使用每时间步包含多达10亿个粒子的时变粒子数据集和具有数百万网格元素的电磁场数据集对技术进行了测试。
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Advanced Visualization Technology for Terascale Particle Accelerator Simulations
This paper presents two new hardware-assisted rendering techniques developed for interactive visualization of the terascale data generated from numerical modeling of next-generation accelerator designs. The first technique, based on a hybrid rendering approach, makes possible interactive exploration of large-scale particle data from particle beam dynamics modeling. The second technique, based on a compact texture-enhanced representation, exploits the advanced features of commodity graphics cards to achieve perceptually effective visualization of the very dense and complex electromagnetic fields produced from the modeling of reflection and transmission properties of open structures in an accelerator design. Because of the collaborative nature of the overall accelerator modeling project, the visualization technology developed is for both desktop and remote visualization settings. We have tested the techniques using both time-varying particle data sets containing up to one billion particles per time step and electromagnetic field data sets with millions of mesh elements.
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