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Case study of random vibration analysis of train-bridge systems subjected to wind loads

机译:风荷载作用下车桥系统随机振动分析的案例研究

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In order to reveal the independent relationship between track irregularity and wind loads, the stochastic characteristics of train-bridge coupling systems subjected to wind loads were investigated by the multi-sample calculation. The vehicle was selected as 23 degrees of freedom dynamical model, and the bridge was described by three-dimensional finite element model. It was assumed that the wind loads were random processes with strong spatial correlation, while the track irregularities were stationary random ones. As a case study, a high-speed train running on a cable-stayed bridge subjected to wind loads was studied. The effect of rail irregularities was deemed to be independent of the effect of wind excitations on the coupling system in the same wind circumstance for the same project, leading to the conclusion that the effect of wind loads and moving vehicle could be calculated separately. The variance results of the stochastic responses of vehicle-bridge coupling system under the action of wind loads and rail irregularities together were equivalent to the sum of the variance of the responses induced by each excitation. Therefore, when one of the input excitations is different, only the effect of changed loads needs to be assessed. Moreover, the new calculated results were combined with the effect of unchanged loads to present the stochastic response of coupling system subjected to the different excitations, reducing the cost of computations. The stochastic characteristics, the CFD (cumulative distribution function) of the coupling system with different wind velocities, vehicle speed, and vehicle marshalling were studied likewise.
机译:为了揭示轨道不平顺与风荷载之间的独立关系,通过多样本计算研究了风荷载作用下的车桥耦合系统的随机特性。选择该车辆作为23自由度动力学模型,并通过三维有限元模型描述桥梁。假定风荷载是具有强空间相关性的随机过程,而轨道不平顺则是平稳的随机过程。作为案例研究,研究了在风荷载作用下在斜拉桥上行驶的高速列车。在同一项目的相同风环境下,轨道不规则的影响被认为与风振对耦合系统的影响无关,从而得出结论,可以分别计算风荷载和运动车辆的影响。车桥耦合系统在风荷载和轨道不平顺共同作用下的随机响应的方差结果等于每次激励引起的响应方差之和。因此,当输入激励之一不同时,只需评估负载变化的影响。此外,新的计算结果与不变载荷的影响相结合,给出了耦合系统在不同激励下的随机响应,从而降低了计算成本。同样研究了具有不同风速,车速和车辆编组的耦合系统的随机特性,CFD(累积分布函数)。

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