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Method for Determining Longitudinal Stiffness of Combined Double Thin-Walled Pier Based on Train-Track-Bridge Interaction

机译:基于火车轨道桥相互作用确定组合双层壁墩纵向刚度的方法

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Combined double thin-walled pier is a new kind of pier adopted in the urban transit system in China, whose longitudinal stiffness cannot be determined by adopting traditional methods. Aiming at this practical issue, this work proposed an alternative method for determining the longitudinal stiffness of the combined double thin-walled pier based on the train-track-bridge interaction. Primarily, the relationship between longitudinal stiffness of the pier and rail stress is underlined, based on which the proposed methodology is described in detail. Finally, a case study is conducted to validate the effectiveness of the proposed method. Results show that the train-track-bridge dynamic interaction theory is effective in determining the longitudinal stiffness of the newly designed and special pier. Rail stress and longitudinal displacement of pier top exceed their limit values with the change of pier longitudinal stiffness. The dynamic stress and thermal stress of rail are the two most important indicators in determining pier longitudinal stiffness, which should be paid attention to in practical engineering.
机译:组合双层壁码头是中国城市过境系统采用的新型码头,其纵向刚度不能采用传统方法来确定。针对这种实际问题,这项工作提出了一种替代方法,用于基于火车轨道桥相互作用来确定组合双层壁墩的纵向刚度。主要是,基于该方法的磁极和轨道应力的纵向刚度之间的关系,基于该方法的详细描述了所提出的方法。最后,进行了案例研究以验证所提出的方法的有效性。结果表明,火车轨道桥动态交互理论在确定新设计和特殊码头的纵向刚度方面是有效的。焊码顶部的轨道应力和纵向位移超出了墩纵向刚度的变化。轨道的动态应力和热应力是确定码头纵向刚度的两个最重要指标,在实际工程中应该注意。

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