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Mitigation of railway induced ground vibration by heavy masses next to the track

机译:铁路旁的重物减轻铁路引起的地面振动

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The effectiveness of heavy masses next to the track as a measure for the reduction of railway induced ground vibration is investigated by means of numerical simulations. It is assumed that the heavy masses are placed in a continuous row along the track forming a wall. Such a continuous wall could be built as a gabion wall and also used as a noise barrier. Since the performance of mitigation measures on the transmission path strongly depends on local ground conditions, a parametric study is performed for a range of possible designs in a set of different ground types. A two-and-a-half dimensional coupled finite element-boundary element methodology is used, assuming that the geometry of the problem is uniform in the direction along the track. It is found that the heavy masses start to be effective above the mass-spring resonance frequency which is determined by the dynamic stiffness of the soil and the mass of the wall. At frequencies above this resonance frequency, masses at the soil's surface hinder the propagation of surface waves. It is therefore beneficial to make the footprint of the masses as large and stiff as possible. For homogeneous soil conditions, the effectiveness is nearly independent of the distance behind the wall. In the case of a layered soil with a soft top layer, the vibration reduction strongly decreases with increasing distance from the wall. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过数值模拟研究了靠近轨道的重物作为减少铁路引起的地面振动的措施的有效性。假定将重块沿形成壁的轨道连续放置。这样的连续壁可以建造为石笼墙,也可以用作隔音屏障。由于传输路径上的缓解措施的性能很大程度上取决于当地的地面条件,因此对一组不同地面类型中的各种可能设计进行了参数研究。假设问题的几何形状在沿着轨道的方向上是均匀的,则使用二维半耦合有限元-边界元方法。已经发现,在质量-弹簧共振频率以上时,重物开始起作用,该共振频率由土壤的动态刚度和墙体的质量决定。在高于该共振频率的频率处,土壤表面的质量阻碍了表面波的传播。因此,有利的是使块的足迹尽可能大和变硬。对于均匀的土壤条件,有效性几乎与墙后的距离无关。对于带有柔软顶层的分层土壤,减振作用会随着与墙体距离的增加而大大降低。 (C)2015 Elsevier Ltd.保留所有权利。

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