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Prediction of Ground Vibration from High Speed Trains Using a Vehicle-Track-Ground Coupling Model

机译:车辆-地面-地面耦合模型对高速列车地面振动的预测

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The dynamically induced ground vibration from high speed trains (HSTs) is investigated using a semi-analytical vehicle-track-ground coupling model. A multi-body vehicle is adopted along with rail irregularity considered in the model. The soil is simulated as a saturated poroelastic half-space with two elastic layers. The coupling system is solved in the transformed domain by applying the Fourier transform, and the dynamic stiffness matrix method is used to deal with the layered soil. The time-domain solutions are obtained by the inverse fast Fourier transform (FFT). The erects of the vehicle speed, observation location, rail irregularity, subgrade-bed stiffness, and vehicle type on the ground vibration are investigated thoroughly. The results show that all these factors can significantly affect the dynamically induced ground vibration.
机译:使用半解析车辆-轨道-地面耦合模型研究了高速列车(HST)引起的动态地面振动。模型中考虑了多体车辆以及轨道不平顺。将土壤模拟为具有两​​个弹性层的饱和多孔弹性半空间。应用傅里叶变换在耦合域内求解耦合系统,并采用动力刚度矩阵法处理层状土。时域解是通过快速傅里叶逆变换(FFT)获得的。深入研究了车速,观测位置,轨道不平整度,路基床身刚度和车辆类型在地面振动的情况。结果表明,所有这些因素都可以显着影响动态诱发的地面振动。

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