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Exploded View Diagrams of Mathematical Surfaces

机译:数学曲面的分解图

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摘要

We present a technique for visualizing complicated mathematical surfaces that is inspired by hand-designed topological illustrations. Our approach generates exploded views that expose the internal structure of such a surface by partitioning it into parallel slices, which are separated from each other along a single linear explosion axis. Our contributions include a set of simple, prescriptive design rules for choosing an explosion axis and placing cutting planes, as well as automatic algorithms for applying these rules. First we analyze the input shape to select the explosion axis based on the detected rotational and reflective symmetries of the input model. We then partition the shape into slices that are designed to help viewers better understand how the shape of the surface and its cross-sections vary along the explosion axis. Our algorithms work directly on triangle meshes, and do not depend on any specific parameterization of the surface. We generate exploded views for a variety of mathematical surfaces using our system.
机译:我们提出了一种可视化复杂数学表面的技术,该技术的灵感来自手工设计的拓扑图。我们的方法生成分解视图,该分解视图通过将表面划分为平行的切片来暴露这种表面的内部结构,这些切片沿着单个线性爆炸轴彼此分开。我们的贡献包括一组用于选择爆炸轴和放置切割平面的简单说明性设计规则,以及应用这些规则的自动算法。首先,我们根据输入模型检测到的旋转和反射对称性来分析输入形状以选择爆炸轴。然后,我们将形状划分为多个切片,这些切片旨在帮助观看者更好地了解表面的形状及其横截面如何沿着爆炸轴变化。我们的算法直接在三角形网格上运行,并且不依赖于曲面的任何特定参数化。我们使用我们的系统为各种数学曲面生成爆炸视图。

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