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3D coupled scaled boundary finite-element/finite-element analysis of ground vibrations induced by underground train movement

机译:地下列车运动引起的地面振动的3D比例缩放边界有限元/有限元分析

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When trains move through the tunnels, vibrations are generated and transmitted to the surrounding ground causing vibrations and noises in adjacent structures. The vibrations and noises can sometimes reach such a high level that can hardly be tolerated by the neighboring residents especially in densely populated urban environments. Consequently, the problem of train-induced vibrations has received increasing attention from both engineers and researchers. This paper presents the application of the scaled boundary finite-element method (SBFEM) to the 3D analysis of ground vibrations induced by underground trains. The media around the tunnel is simulated by the SBFEM. The train track is modeled using the finite-element method. 3D examples in both frequency and time domains are addressed to validate the accuracy and applicability of the method.
机译:当火车通过隧道时,会产生振动并将其传递到周围的地面,从而在相邻结构中产生振动和噪音。振动和噪音有时会达到很高的水平,周围居民几乎无法忍受,尤其是在人口稠密的城市环境中。因此,火车引起的振动问题已引起工程师和研究人员的越来越多的关注。本文介绍了比例边界有限元方法(SBFEM)在地下火车引起的地面振动的3D分析中的应用。隧道周围的介质由SBFEM模拟。使用有限元方法对火车轨道进行建模。解决了频域和时域中的3D示例,以验证该方法的准确性和适用性。

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