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Dynamics of trains and train-like articulated systems travelling in confined fluid - Part 2: Wave propagation and flow-excited vibration

机译:在密闭流体中行驶的火车和类似火车的铰接系统的动力学第2部分:波传播和激流振动

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Wave propagation and response of a train of flexibly interconnected rigid cars travelling in a confined cylindrical "tunnel" subjected to fluid dynamic forces are studied theoretically. For the wave propagation analysis, an infinite-length train represented by a lumped-parameter Timoshenko-beam (LTB) model is employed. The train response is simulated using a travelling sinusoidal aerodynamic force that mimics the features obtained during running experiments on real trains. In addition, the response of the system is examined when the velocity of the force approaches the minimum phase velocity of a travelling wave in the train. The principal aim of this study is to investigate the effect of aerodynamic forces on the dynamics of a high-speed train running in a tunnel, or more generally of a train-like system travelling in a coaxial cylindrical tube. The results of this study show that: (a) when aerodynamic forces act on a train, the frequency bands of the dispersion relation of wave propagation shift, and thus no classical normal modes (standing wave solutions) exist in the system; (b) the wavelength of the travelling sinusoidal force controls the phase differences between cars in the train; and (c) the response of the train can be considerably amplified when the speed of the travelling force coincides with the minimum phase velocity of travelling waves in the train.
机译:理论上研究了在有限的圆柱形“隧道”中行驶的一列柔性互连刚性汽车在流体动力作用下的波传播和响应。对于波传播分析,采用了由集总参数Timoshenko-beam(LTB)模型表示的无限长列。使用正弦运动的空气动力模拟火车响应,该动力模仿在真实火车上运行实验期间获得的特征。另外,当力的速度接近火车中行波的最小相速度时,将检查系统的响应。这项研究的主要目的是研究空气动力对隧道中运行的高速列车动力学的影响,或更普遍地说,是对同轴圆柱管中行进的类火车系统动力学的影响。研究结果表明:(a)当空气动力作用于列车上时,波传播的色散关系的频带发生偏移,因此系统中不存在经典的标准模态(驻波解); (b)正弦行进力的波长控制火车中轿厢之间的相位差; (c)当行进力的速度与列车中行波的最小相速度一致时,列车的响应可以大大放大。

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