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Splitting meshless deforming objects with explicit surface tracking

机译:通过显式表面跟踪拆分无网格变形对象

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摘要

We present a novel algorithm for efficiently splitting deformable solids along arbitrary piecewise linear crack surfaces in cutting and fracture simulations. The algorithm combines a meshless discretization of the deformation field with explicit surface tracking using a triangle mesh. We decompose the splitting operation into a first step where we synthesize crack surfaces, and a second step where we use the newly synthesized surfaces to update the meshless discretization of the deformation field. We present a novel visibility graph for facilitating fast update of shape functions in the meshless discretization. The separation of the splitting operation into two steps, along with our novel visibility graph, enables high flexibility and control over the splitting trajectories, provides fast dynamic update of the meshless discretization, and allows for an easy implementation. As a result, our algorithm is scalable, versatile, and suitable for a large range of applications, from computer animation to interactive medical simulation.
机译:我们提出了一种新颖的算法,可在切削和断裂模拟中沿任意分段线性裂纹表面有效地分解可变形固体。该算法将变形场的无网格离散化与使用三角形网格的显式表面跟踪相结合。我们将拆分操作分解为第一步,在该步骤中,我们合成了裂纹表面;在第二步中,我们使用了新合成的表面来更新变形场的无网格离散化。我们提出了一种新颖的可见性图,以促进无网格离散化中形状函数的快速更新。将拆分操作分为两个步骤,再加上我们新颖的可见性图,可实现高度的灵活性和对拆分轨迹的控制,可对无网格离散化进行快速动态更新,并易于实现。因此,我们的算法具有可扩展性,通用性,适用于从计算机动画到交互式医学模拟的广泛应用。

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