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Particle level set advection for the interactive visualization of unsteady 3D flow

机译:用于非稳定3D流动的交互式可视化的粒子级集对流

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摘要

Typically, flow volumes are visualized by defining their boundary as iso-surface of a level set function. Grid-based level sets offer a good global representation but suffer from numerical diffusion of surface detail, whereas particle-based methods preserve details more accurately but introduce the problem of unequal global representation. The particle level set (PLS) method combines the advantages of both approaches by interchanging the information between the grid and the particles. Our work demonstrates that the PLS technique can be adapted to volumetric dye advection via streak volumes, and to the visualization by time surfaces and path volumes. We achieve this with a modified and extended PLS, including a model for dye injection. A new algorithmic interpretation of PLS is introduced to exploit the efficiency of the GPU, leading to interactive visualization. Finally, we demonstrate the high quality and usefulness of PLS flow visualization by providing quantitative results on volume preservation and by discussing typical applications of 3D flow visualization.
机译:通常,通过将流量边界定义为水平集函数的等值面来可视化流量。基于网格的水平集提供了良好的全局表示,但是遭受了表面细节的数值扩散的困扰,而基于粒子的方法更精确地保留了细节,但引入了不相等的全局表示的问题。粒子水平集(PLS)方法通过在网格和粒子之间交换信息来结合两种方法的优点。我们的工作表明,PLS技术可以通过条纹体积适应体积染料平流,并可以通过时间表面和路径体积适应可视化。我们通过修改和扩展的PLS(包括用于染料注入的模型)来实现这一目标。引入了PLS的新算法解释,以利用GPU的效率,从而实现交互式可视化。最后,我们通过提供关于体积保存的定量结果并讨论3D流量可视化的典型应用来证明PLS流量可视化的高质量和实用性。

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