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Wave barrier of lime-cement columns against train-induced ground-borne vibrations

机译:水泥砂浆柱对列车引起的地面振动的挡墙

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This paper presents a comparison between measured train-induced ground vibrations in the free-field before and after countermeasures had been taken at Kahoeg near Gothenburg in Sweden. A wave barrier of lime-cement columns was constructed parallel to the railway in order to reduce the ground-borne vibrations inside nearby buildings. On top of the barrier an embankment was built to reduce air-borne vibrations. Due to the wave barrier design, part of the energy content of the waves was expected to be reflected by the screen and transmitted energy was expected to be partly scattered. Contribution from the noise-embankment was not thought likely but could not be ruled out due to its fairly large mass and its close proximity to the railway. The effect of the mitigating measures resulted in a 67% reduction of the maximum particle velocity at 30 m and 41% at 60 m from the railway. A simple two-dimensional finite element model has been used to study the relative importance of the wave barrier and the noise-embankment as contributors to the mitigation recorded of the ground vibrations in the field. It is concluded with respect to ground vibrations that both the barrier and the embankment had a mitigating effect but that the contribution from the barrier dominated. Furthermore, it is seen from the field results as well as the simulation that the effect of the mitigating action is reduced with increasing distance from the railway.
机译:本文介绍了在瑞典哥德堡附近的Kahoeg采取对策之前和之后在自由场中测得的列车引起的地面振动之间的比较。为了减少附近建筑物内部的地面振动,平行于铁路修建了石灰水泥柱的挡墙。在屏障的顶部,修建了路堤以减少空气传播的振动。由于采用了波障设计,预计波的部分能量会被屏幕反射,并且透射的能量也会被部分散射。噪声堤防的贡献不大可能,但由于其质量相当大且靠近铁路,因此不能排除。缓解措施的效果使距铁路的30 m处的最大粒子速度降低了67%,而位于60 m处的最大粒子速度降低了41%。一个简单的二维有限元模型已被用来研究防波堤和噪声堤岸对减轻地面震动的贡献。关于地面振动的结论是,障碍物和路堤都具有缓解作用,但障碍物的贡献起主导作用。此外,从现场结果和模拟中可以看出,随着距铁路距离的增加,缓解作用的影响减小了。

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