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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Development of a finite element cable model for use in low-tension dynamics simulation
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Development of a finite element cable model for use in low-tension dynamics simulation

机译:开发用于低张力动力学仿真的有限元电缆模型

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摘要

To accurately simulate the motion of slack marine cables, it is necessary to capture the effects of the cable's bending and torsional stiffness. In this paper a computationally efficient and novel third-order finite element is presented that provides a representation of both the bending and torsional effects and accelerates the convergence of the model at relatively large element sizes. Using a weighted residual approach, the discretized motion equations for the new cubic element are developed. Applying inter-element constraint equations, we demonstrate how an assembly of these novel elemental equations can be significantly reduced to prevent the growth of the system equations normallly associated with such higher order elements and allow for faster evaluation of the cable dynamics in either taut or low-tension situations.
机译:为了准确地模拟松弛的船用电缆的运动,必须捕获电缆弯曲和扭转刚度的影响。在本文中,提出了一种计算有效且新颖的三阶有限元,该有限元提供了弯曲和扭转效应的表示,并在较大的单元尺寸下加速了模型的收敛。使用加权残差法,开发了新立方元素的离散运动方程。应用元素间约束方程,我们演示了如何显着减少这些新的元素方程的组合,以防止通常与此类高阶元素相关的系统方程的增长,并允许在拉紧或拉低时更快地评估电缆动力学紧张局势。

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