测试用于3D工件排水的旋转轴

Y. Yasui, Sara McMains
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引用次数: 3

摘要

给定一个三角形网格来定义一个充满水的三维工件的几何形状,我们提出了一种算法来测试,对于任意给定的轴,工件在绕轴旋转时是否会在重力作用下完全排干。观察到所有的水陷阱都包含一个凹顶点,我们通过构造和分析一个有向的“排水图”来解决我们的问题,该图的节点对应于几何图形的凹顶点,并且当我们围绕给定轴旋转工件时,其边缘是根据捕获水的过渡设置的。我们的算法用于检查给定的旋转轴是否排出工件,对于具有超过100,000个三角形的模型,大约在一秒钟内输出结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Testing an axis of rotation for 3D workpiece draining
Given a triangular mesh defining the geometry of a 3D workpiece filled with water, we propose an algorithm to test whether, for an arbitrary given axis, the workpiece will be completely drained under gravity when rotated around the axis. Observing that all water traps contain a concave vertex, we solve our problem by constructing and analyzing a directed "draining graph" whose nodes correspond to concave vertices of the geometry and whose edges are set according to the transition of trapped water when we rotate the workpiece around the given axis. Our algorithm to check whether or not a given rotation axis drains the workpiece outputs a result in about a second for models with more than 100,000 triangles.
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