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首页> 外文期刊>Journal of Sound and Vibration >Higher order time-step integration methods with complex time steps
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Higher order time-step integration methods with complex time steps

机译:具有复杂时间步长的高阶时间步长积分方法

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摘要

Unconditionally stable higher order time-step integration algorithms are presented. The algorithms are based on the Newmark method with complex time steps. The numerical results at the (complex) sub-step locations are combined linearly to give higher order accurate results at the end of the time step. The ultimate spectral radius in the high-frequency range is a controllable parameter for these algorithms. Among these algorithms, the asymptotic annihilating algorithm and the non-dissipative algorithm correspond to the first sub-diagonal and diagonal Pade approximations respectively. The characteristics of the present algorithms with various numerical dissipations are found to be in between these two algorithms. The algorithmic parameters for the third, fifth and seventh order algorithms with various numerical dissipations are given explicitly. The order of accuracy is increased by one if these algorithms are set to non-dissipative. The spectral radii, algorithm damping ratios and relative period errors are compared favourably with other higher order algorithms. (C) 1998 Academic Press Limited. [References: 16]
机译:提出了无条件稳定的高阶时步积分算法。该算法基于具有复杂时间步长的Newmark方法。 (复杂)子步骤位置处的数值结果被线性组合,以在时间步骤的末尾给出更高阶的准确结果。对于这些算法,高频范围内的最终频谱半径是可控制的参数。在这些算法中,渐近an灭算法和非耗散算法分别对应于第一副对角线和对角线Pade近似。发现具有各种数值耗散的本算法的特征在这两种算法之间。明确给出了具有各种数值耗散的三阶,五阶和七阶算法的算法参数。如果将这些算法设置为非耗散,则精度的顺序将增加一。光谱半径,算法阻尼比和相对周期误差可与其他高阶算法进行比较。 (C)1998 Academic Press Limited。 [参考:16]

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