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Fast interaction functions for bond-based peridynamics

机译:快速交互功能可实现基于键的绕动力学

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Numerical implementations of bond-based peridynamics are computationally intensive. We propose a new class of fast interaction functions for constitutive modelling that reduce calculation time when compared to other formulations in the literature. This is achieved by substituting the stretch definition from the original interaction functions with a new stretch measure that we call modified stretch . The resultant interaction functions are proven to approximate the existing formulations, and proven to require equivalent stability and convergence conditions under explicit time integration. Gains of speed greater than 11% were obtained in numerical tests that compared the new functions with those in the literature. The new approach was verified against classical elastic theory using simple examples and shows good agreement. Examples describing three-dimensional quasi-brittle structures are also presented. The proposed fast interaction functions lead to improvements in the ability to calculate the load response of realistic structures, since they usually require fine discretisation and large computation time.
机译:基于键的绕动力学的数值实现是计算密集型的。我们提出了用于本构模型的一类新的快速交互函数,与文献中的其他公式相比,该函数减少了计算时间。这是通过将 stretch定义从原始交互函数中替换为新的拉伸度量(我们称为“修改后的Stretch”)来实现的。事实证明,由此产生的相互作用函数近似于现有公式,并证明在明确的时间积分下需要等效的稳定性和收敛条件。通过将新功能与文献中的功能进行比较的数值测试获得了大于11%的速度增益。通过简单的例子对新方法进行了经典弹性理论的验证,并显示出良好的一致性。还提供了描述三维准脆性结构的示例。所提出的快速交互功能可提高计算实际结构的荷载响应的能力,因为它们通常需要精细的离散化和较长的计算时间。

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