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Finite element analysis of multistory structures subjected to train-induced vibrations considering soil-structure interaction

机译:考虑土壤 - 结构相互作用的培训振动经受多晶结构的有限元分析

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Due to the expansion of cities through megaprojects and the increase in populations in large cities, many buildings are constructed beside train tracks. Trains passing nearby buildings cause ground vibrations that may affect the structures and their foundations. In this research, a detailed 3-D finite element analysis is conducted on a ten-story reinforced concrete framed structure resting on a raft foundation using ABAQUS. The soil profile consists of silty clay for 10 m followed by dense sand for 40 m. The soil block considered in the analysis has plan dimensions of 100m × 100m. The train loads are modeled using moving point loads. The train track is considered at different distances from the building. The effect of the train speed and its track distance from the building on the response of the structure with its foundations are investigated. Mitigation techniques including open trenches and in-filled foam trenches are considered in order to mitigate the effect of vibrations induced by trains on the adjacent building. The results showed that these techniques are efficient in reducing the train-induced vibrations transmitted to the soil and the adjacent building. The average reduction percentage in acceleration was 61.29 % and 57.39 % when using in-filled foam trench and open trench mitigation techniques, respectively.
机译:由于城市通过Megaprojects扩展和大城市中的人口的增加,许多建筑物都在火车轨道旁边建造。靠近建筑物的火车导致造成可能影响结构及其基础的地面振动。在本研究中,在使用ABAQUS的筏基础上搁置在筏基础上的十一型钢筋混凝土框架结构上进行了详细的3-D有限元分析。土壤型材由粉质粘土组成10米,然后致密砂40米。在分析中考虑的土壤块具有100m×100m的计划尺寸。列车负载使用移动点负载进行建模。火车轨道被视为距离建筑物的不同距离。研究了列车速度及其轨道距离建筑物与其基础的响应。考虑了包括开放沟槽和充满泡沫沟槽的缓解技术,以减轻由rain诱导的振动在相邻建筑物上的效果。结果表明,这些技术在减少传递到土壤和相邻建筑物的列车诱导的振动方面是有效的。当使用内孔沟槽和开放式沟槽缓解技术时,加速度的平均降低百分比为61.29%和57.39%。

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