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Evaluating the effect of vibration isolation mats on train-induced ground vibrations

机译:评估隔振垫对列车引起的地面振动的影响

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In the present paper, the effectiveness of a vibration isolation mat for a railway slab track system is studied using a finite element model of the railway track. The finite elements are formulated in a moving frame of reference following the moving load at a particular speed. The rails are modeled using Bernoulli beams, whereas the track slab and an underlying supporting plate are modeled using Kirchhoff plate elements. The vibration isolation mat is modeled as a continuous visco-elastic layer between the track slab and the supporting plate. The response of the underlying soil is represented through a dynamic stiffness matrix, obtained via the Green's function for a horizontally layered visco-elastic strata in a moving frame of reference in the frequency-wavenumber domain. The model accounts for the quasi-static excitation caused by the static axle loads of a vehicle, as well as the dynamic excitation caused by the vehicle running over an uneven rail. The free-field response and the insertion loss obtained with the vibration isolation mat is first evaluated for a harmonic load moving along the track. Band-averaged vibration levels and the insertion loss for a fixed point next to the track are then calculated for a train cart, represented by a 10 degree-of-freedom multi-body system, running at different speeds.
机译:本文利用铁路轨道的有限元模型研究了铁路平板轨道系统隔振垫的有效性。有限元是按照特定速度下的移动载荷在移动的参考系中制定的。轨道使用伯努利梁进行建模,而轨道板和下方的支撑板则使用Kirchhoff板单元进行建模。隔振垫被建模为轨道板和支撑板之间的连续粘弹性层。地下土壤的响应通过动态刚度矩阵表示,该矩阵通过格林函数针对频率-波数域中移动参考系中水平分层的粘弹性地层获得。该模型考虑了由车辆的静态车轴载荷引起的准静态激励,以及由在不平坦的轨道上行驶的车辆引起的动态激励。首先评估通过振动隔离垫获得的自由场响应和插入损耗,以了解沿轨道移动的谐波负载。然后,针对以10个自由度的多体系统为代表的,以不同速度运行的火车车,计算出带平均振动水平和轨道旁固定点的插入损耗。

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