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Hyper-Objective Vortices

机译:超目标涡旋

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摘要

Almost all properties of vector fields, including magnitude, direction, $lambda _2$& x03BB;2 and vorticity change under arbitrary movements of the observer. This is undesirable since measurements of physical properties should ideally not depend on the way the (virtual) measurement device moves. There are some properties that are invariant under certain types of reference frame transformations: Galilean invariance (invariance under equal-speed translation) and objectivity (invariance under any smooth rotation and translation of the reference frame). In this paper, we introduce even harder conditions than objectivity: we demand invariance under any smooth similarity transformation (rotation, translation and uniform scale) as well as invariance under any smooth affine transformation of the reference frame. We show that these new hyper-objective measures allow the extraction of vortices that change their volume or deform. Further, we present a generic approach that transforms almost any vortex measure into a hyper-objective one. We apply our methods to vortex extraction in 2D and 3D vector fields, and analyze the numerical robustness, extraction time and the minimization residuals for the Galilean invariant, objective, and the two new hyper-objective approaches.
机译:向量场的几乎所有属性,包括大小,方向,$ lambda _2 $&x03BB; 2和涡度在观察者的任意移动下都会改变。这是不希望的,因为理想情况下物理性能的测量不应依赖于(虚拟)测量设备的移动方式。在某些类型的参考框架转换下,某些属性是不变的:Galilean不变(等速平移下的不变)和客观性(在任何平稳旋转和平移参考框架下不变)。在本文中,我们介绍了比客观条件更艰苦的条件:我们要求在任何平滑相似度转换(旋转,平移和均匀缩放)下保持不变,以及在参考框的任何平滑仿射变换下保持不变。我们表明,这些新的超客观测量允许提取改变其体积或变形的涡流。此外,我们提出了一种通用方法,可将几乎所有涡旋量度转换为超目标涡旋量度。我们将我们的方法应用于2D和3D向量场中的涡旋提取,并分析了Galilean不变,客观和两种新的超客观方法的数值鲁棒性,提取时间和最小化残差。

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