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A constrained spline dynamics (CSD) method for interactive simulation of elastic rods

机译:用于弹性杆的交互式模拟的受限样条动力学(CSD)方法

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摘要

In this paper, we present constrained spline dynamics (CSD) as a unified framework for the elastodynamic simulation of elastic rods subjected to constraints at interactive rates. The geometry of the rod and its kinematics are discretized using smooth spline functions and the rod's centerline co-ordinates as degrees of freedom. Interpolating B-spline shape functions are used to take advantage of the smooth basis and the Kronecker delta property. The formulation is developed from Hamilton's principle with bending and twisting energies represented as compliant constraints. The bend-twist coupled behavior is modeled using the concept of holonomy of curves utilizing the smooth and accurate curvature and bi-normal vector fields, eliminating rotational director frames as degrees of freedom. By enforcing uniform arc-length parametrization, high accuracy is achieved in modeling bend, twist, and bend-twist coupling. Several numerical examples are presented that demonstrate the convergence behavior, computational accuracy and efficiency of the formulation.
机译:在本文中,我们将受约束的花键动态(CSD)作为统一框架,其弹性杆弹性杆的弹性杆仿真,其受到交互式速率的约束。使用光滑的样条函数和杆的中心线将杆及其运动学的几何形状离散地分配为自由度。插值B样条函数用于利用顺利的基础和Kronecker Delta属性。该配方是从汉密尔顿原则开发的,弯曲和扭曲能量表示为柔顺的限制。弯曲扭曲耦合行为是利用光滑和精确的曲率和双态矢量场的曲线的实体概念建模的建模,消除了作为自由度的旋转导演框架。通过实施均匀的弧长参数化,在弯曲,扭转和弯曲扭转​​耦合方面实现了高精度。提出了几个数值示例,其证明了配方的收敛行为,计算准确性和效率。

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