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Dynamic response analysis of single-span guideway caused by high speed maglev train

机译:高速磁悬浮列车引起单跨导轨的动力响应分析

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High speed maglev is one of the most important reformations in the ground transportation systems because of its no physical contact nature. This paper intends to study the dynamic response of the single-span guideway induced by moving maglev train. The dynamic model of the maglev train-guideway system is established. In this model, a maglev train consists of three vehicles and each vehicle is regarded as a multibody system with 34 degrees-of-freedom. The guideway is modeled as a simply supported beam. Considering the motion-dependent nature of electromagnetic forces in the maglev system, an iterative approach is presented to compute the dynamic response of a maglev train-guideway system. The histories of the train traversing the guideways are simulated and the dynamic responses of the guideway and the train vehicles are calculated. A field experiment is carried out to verify the results of the analysis. The resonant conditions of single-span guideway are analyzed. The results show that all the dynamic indexes of train-guideway system are far less than permissive values of railway and maglev system, the vertical resonant of guideways caused by periodical excitations of the train will not happen.
机译:高速磁悬浮列车由于没有物理接触的性质,因此是地面运输系统中最重要的改革之一。本文旨在研究磁悬浮列车引起的单跨导轨的动力响应。建立了磁悬浮列车-导轨系统的动力学模型。在此模型中,磁悬浮列车由三辆车组成,每辆车被视为具有34个自由度的多体系统。导轨建模为简单支撑的梁。考虑到磁悬浮系统中电磁力的运动相关性质,提出了一种迭代方法来计算磁悬浮列车-导轨系统的动力响应。模拟了横穿列车的历史,计算了列车和车辆的动力响应。进行现场实验以验证分析结果。分析了单跨导轨的共振条件。结果表明,列车-轨道系统的所有动力指标均远小于铁路和磁悬浮系统的允许值,不会发生列车周期性激励引起的轨道垂直共振。

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