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Track-Based Control Measures for Ground Vibration – The Influence of Quasi-Static Loads and Dynamic Excitation

机译:基于轨迹的地面振动控制措施 - 准静态负荷和动态励磁的影响

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Ground vibration from surface trains is induced by two main excitation mechanisms, due to the moving quasi-static loads and dynamic loads due to track roughness. The relative importance of these two mechanisms has been investigated using a semi-analytical model of the coupled vehicle, track and ground system. The track is represented as an infinite, layered beam resting on one or more elastic soil layers, overlying a three-dimensional half-space of ground material. The train is modelled as a multi-body system with both primary and secondary suspensions and its motion is included. The quasi-static and dynamic loads have been investigated over a wide range of conditions for locations close to the track and further away. Results are shown in terms of insertion gains for both dynamic and quasi-static components for a wide variety of conditions. It is confirmed that an assessment of the effect of a change in support stiffness should not be based on measurements too close to the track – in the case considered the distance should he at least 10 m to give representative results.
机译:由于由于轨道粗糙度而移动的准静态负载和动态载荷,由两个主要励磁机构引起地表列车的地面振动。使用耦合车辆,轨道和地面系统的半分析模型研究了这两种机制的相对重要性。轨道被表示为搁置在一个或多个弹性土层上的无限分层梁,覆盖着地层的三维半空间。该列车被建模为具有初级和次要悬架的多体系系统,并且包括其运动。已经研究了准静态和动态载荷,在各种条件下进行了靠近轨道的位置和更远的位置。结果以动态和准静态部件的插入增益而言,用于各种条件。证实,对支持刚度变化的影响的评估不应基于太靠近轨道的测量 - 在考虑到距离的情况下,他至少10米才能给出代表结果。

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