Prism:用于多物理场仿真的多视图可视化工具

D. Rogers, C. Garasi
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引用次数: 2

摘要

复杂的模拟(特别是那些涉及多重耦合物理的)不能仅仅使用基于几何的可视化来理解。这样的可视化在解释结果和获得运动学见解时是必要的,但是在努力理解事情发生的原因或如何发生时,或者在调查模拟的动态演变时,它们是不够的。对于多物理场模拟(例如,包括热传导固体动力学、磁流体动力学和辐射流体动力学),物理和材料特性之间的复杂相互作用发生在代码中,必须以其他方式进行研究。利用之前在视图协调、刷刷和链接技术以及强大的可视化库方面的大量工作,我们开发了Prism,这是一款针对桑迪亚国家实验室特定分析需求的应用程序。这个多视图科学可视化工具紧密集成了仿真数据和材料模型的几何和相空间视图。与分析人员密切合作,我们开发了这个生产工具,以促进对复杂的多物理场模拟的理解。我们将讨论Prism的当前实现,以及使用该工具获得的具体结果示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prism: a multi-view visualization tool for multi-physics simulation
Complex simulations (in particular, those involving multiple coupled physics) cannot be understood solely using geometry-based visualizations. Such visualizations are necessary in interpreting results and gaining insights into kinematics, however they are insufficient when striving to understand why or how something happened, or when investigating a simulation's dynamic evolution. For multiphysics simulations (e.g. those including solid dynamics with thermal conduction, magnetohydrodynamics, and radiation hydrodynamics) complex interactions between physics and material properties take place within the code which must be investigated in other ways. Drawing on the extensive previous work in view coordination, brushing and linking techniques, and powerful visualization libraries, we have developed Prism, an application targeted for a specific analytic need at Sandia National Laboratories. This multiview scientific visualization tool tightly integrates geometric and phase space views of simulation data and material models. Working closely with analysts, we have developed this production tool to promote understanding of complex, multiphysics simulations. We discuss the current implementation of Prism, along with specific examples of results obtained by using the tool.
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