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An efficient multi-time-step method for train-track-bridge interaction

机译:一种有效的列车-轨道-桥梁相互作用的多时步方法

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In this paper, the multi-time-step method (MTS) of time integration is proposed to reduce the computational cost of solving the dynamic interaction of a train-track-bridge coupled system (TTBS). Considering the different domain frequency characteristics of the dynamic responses of the train, track, and bridge, the MTS method decomposes the TTBS into two smaller subdomains: the train-track coupled subsystem with a high domain frequency, and the bridge subsystem with a low domain frequency. A fine time-step and a coarse time-step are respectively adopted for the train-track subsystem and the bridge subsystem to improve the computational efficiency. The two subsystems are coupled by the interaction forces between the track and bridge. Two partition types of the TTBS are introduced and the effect of different decomposition types on the accuracy and efficiency of the MTS method are discussed. The proposed method is validated by comparing the numerical results with field measurement data of a simply supported bridge. A numerical simulation of a train traversing a long-span cable-stayed bridge is used to demonstrate the computational efficiency and accuracy of the proposed method. It is shown that the proposed method is accurate and computationally more efficient than using a uniform time-step for the entire TTBS. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了时间积分的多时步法(MTS),以减少解决列车-轨道-桥梁-桥梁耦合系统(TTBS)的动态相互作用的计算成本。考虑到列车,轨道和桥梁的动态响应的不同域频率特性,MTS方法将TTBS分解为两个较小的子域:具有高域频率的列车-轨道耦合子系统和具有低域的桥梁子系统频率。列车轨道子系统和桥梁子系统分别采用了精细的时间步长和粗糙的时间步长,以提高计算效率。两个子系统通过轨道和桥梁之间​​的相互作用力耦合。介绍了TTBS的两种划分类型,并讨论了不同分解类型对MTS方法准确性和效率的影响。通过将数值结果与简单支撑桥梁的现场测量数据进行比较,验证了该方法的有效性。通过对横穿大跨度斜拉桥的列车进行数值模拟,证明了该方法的计算效率和准确性。结果表明,所提出的方法比整个TTBS的统一时间步长更准确,计算效率更高。 (C)2017 Elsevier Ltd.保留所有权利。

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