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A new family of two-stage explicit time integration methods with dissipation control capability for structural dynamics

机译:具有消散控制功能的结构动力学的两阶段显式时间积分新方法族

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In this article, a new family of two-stage explicit time integration methods is developed for more effective analyses of linear and nonlinear problems of structural dynamics. The collocation method and special types of difference approximations with adjustable algorithmic parameters are employed to approximate the displacement and velocity vectors in time. The new two-stage explicit method is designed to possess controllable numerical dissipation like many of the recent explicit methods. Interestingly, the period error of the new two-stage explicit method is noticeably decreased when compared with the existing two-stage explicit methods. All improved and preferable features of the new two-stage explicit method are achieved without additional computational costs. Illustrative linear and nonlinear problems are solved numerically by using the new and existing methods, and numerical results are carefully compared to verify the improved performance of the new two-stage explicit method.
机译:在本文中,开发了一个新的两阶段显式时间积分方法系列,可以更有效地分析结构动力学的线性和非线性问题。采用搭配方法和具有可调算法参数的特殊类型的差分逼近来及时估算位移和速度矢量。新的两阶段显式方法被设计为具有可控的数值耗散,就像许多最近的显式方法一样。有趣的是,与现有的两阶段显式方法相比,新的两阶段显式方法的周期误差显着降低。新的两阶段显式方法的所有改进和优选的功能都可以实现,而无需额外的计算成本。通过使用新方法和现有方法对示例性线性和非线性问题进行数值求解,并仔细比较了数值结果,以验证新的两阶段显式方法的改进性能。

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