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A novel decoupling dynamic method with third-order accuracy and controllable dissipation

机译:一种新型解耦动态方法,具有三阶精度和可控耗散

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In this paper, an efficient explicit integration method with third-order accuracy and controllable dissipation properties is proposed, and a new accuracy criterion is presented to evaluate relative errors of integration methods. By using this method, a desirable accuracy for responses in the low-frequency domain can be attained, spurious vibrations in the high-frequency domain can be strongly suppressed. Moreover, for the proposed method, update values of the displacement and velocity do not depend on the new state. Hence, it is convenient for decoupling a multi-spring coupling dynamic system to achieve high computational efficiency. The standard formulations of the proposed method, including the second-order and third-order accuracy schemes, are derived by discussing the local truncation error, difference accuracy, and stability firstly. Subsequently, the accuracy properties of the proposed method, e.g., the period elongation and amplitude decay, are analyzed in comparison with other available state-of-the-art explicit integration methods. Additionally, the properties of the proposed method, including the accuracy, convergence, dissipation, efficiency, and nonlinearity, are evaluated by using three examples. More specifically, the accuracy and convergence are evaluated through an example with theoretical solutions; the dissipation and efficiency are investigated by analyzing a geodesic dome truss; and the effectiveness in terms of the nonlinearity is investigated via a typical nonlinear dynamic system. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种具有三阶精度和可控耗散特性的有效的显式积分方法,并提出了一种新的准确性标准来评估集成方法的相对误差。通过使用该方法,可以获得低频域中的响应的理想精度,可以强烈地抑制高频域中的虚假振动。此外,对于所提出的方法,位移和速度的更新值不依赖于新状态。因此,可以方便地解耦多弹簧耦合动态系统以实现高计算效率。通过讨论本地截断误差,差异精度和稳定性,通过讨论局部截断误差,差异准确度和稳定性来导出所提出的方法的标准制剂,包括二阶和三阶精度方案。随后,与其他可用的最先进的显式集成方法相比,分析了所提出的方法的精度特性,例如,期间伸长率和幅度衰减。另外,通过使用三个例子评估所提出的方法的性质,包括准确性,收敛,耗散,效率和非线性。更具体地,通过具有理论解决方案的示例进行评估精度和收敛;通过分析测地圆顶桁架来研究耗散和效率;通过典型的非线性动态系统研究了非线性方面的有效性。 (c)2021 elestvier有限公司保留所有权利。

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