3D asymmetric tensor fields have found many applications in science and engineering domains, such as fluid dynamics and solid mechanics. 3D asymmetric tensors can have complex eigenvalues, which makes their analysis and visualization more challenging than 3D symmetric tensors. Existing research in tensor field visualization focuses on 2D asymmetric tensor fields and 3D symmetric tensor fields. In this paper, we address the analysis and visualization of 3D asymmetric tensor fields. We introduce six topological surfaces and one topological curve, which lead to an eigenvalue space based on the tensor mode that we define. In addition, we identify several non-topological feature surfaces that are nonetheless physically important. Included in our analysis are the realizations that triple degenerate tensors are structurally stable and form curves, unlike the case for 3D symmetric tensors fields. Furthermore, there are two different ways of measuring the relative strengths of rotation and angular deformation in the tensor fields, unlike the case for 2D asymmetric tensor fields. We extract these feature surfaces using the A-patches algorithm. However, since three of our feature surfaces are quadratic, we develop a method to extract quadratic surfaces at any given accuracy. To facilitate the analysis of eigenvector fields, we visualize a hyperstreamline as a tree stem with the other two eigenvectors represented as thorns in the real domain or the dual-eigenvectors as leaves in the complex domain. To demonstrate the effectiveness of our analysis and visualization, we apply our approach to datasets from solid mechanics and fluid dynamics.
翻译:3D 不对称电磁场在科学和工程领域发现了许多应用,例如流体动态和固态力学。 3D 不对称电磁场可能具有复杂的电子价值, 这使得它们的分析和视觉化比 3D 的对称电磁场更具挑战性。 目前对强光场的研究侧重于 2D 不对称电磁场和 3D 的对称电磁场。 在本文中, 我们处理3D 不对称电磁场的分析和视觉化。 我们引入了6个表层和一个表层曲线, 导致基于我们定义的色素模式的对等值空间。 此外, 我们确定了若干非地形特征表面的分析和可视化比 3D 不对称电磁场和 3D 的对称电光场。 此外, 与 2D 不对称电磁场不同, 我们用直径的直径直径分析法将这些地表图表表进行结构分析。 然而, 3个地貌变变色变形的图表层分析显示我们所给定的对立的直径, 。