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Track and ground vibrations generated by high-speed train running on ballastless railway with excitation of vertical track irregularities

机译:高速列车在无ball铁路上行驶时产生的轨道和地面振动,并引起垂直轨道不平整

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Track irregularities generated during the running service of high-speed railways aggravate vibrations of the track and the surrounding ground environment To better understand the propagation of vibrations induced by high-speed train running on irregular tracks, a 2.5-dimensional (2.5D) finite element model combining with thin-layer elements was applied to establish a vehicle-track-foundation coupled dynamic analysis model. A quarter-car model was used to derive the equation for wheel-rail interaction force considering track irregularity. The track structure and the underlying foundation were simulated using the 2.5D finite element model, and the subsoil boundary was simulated using thin-layer elements. Compared with the field measurements of the Beijing-Shanghai high-speed railway, the reliability of the established numerical model in analyzing vibration response was verified. A spectrum analysis of the response data obtained from the field measurements reveals that for a newly constructed high-speed railway, track alignment is in good condition due to the operation of grinding and leveling, and vehicle parameters dominate the vibration response of the track structure. Then influences of track irregularities of four typical wavelengths on the vibrations of the track and the surrounding ground environment were investigated. It is found that track irregularities of smaller wavelengths induce higher vibration frequencies and significantly higher vibration responses from the track and the ground compared to track irregularities of longer wavelengths. However, the low-frequency vibrations induced by the latter propagate to a longer distance compared to the former. The critical velocity of the ballastless slab track-ground system is greater than the Rayleigh wave velocity of the soft layer of the subsoil. When train speed is lower than the critical velocity, track irregularity substantially affects the vibrations of the track and the surrounding ground. When the train speed exceeds that critical velocity, the ground vibration is determined by the train wheel weight (c) 2015 Elsevier Ltd. All rights reserved.
机译:高速铁路运行过程中产生的轨道不平整加剧了轨道和周围地面环境的振动为了更好地理解高速列车在不规则轨道上行驶引起的振动的传播,使用了2.5维(2.5D)有限元应用与薄层单元相结合的模型,建立了车辆-路基-基础耦合动力分析模型。考虑到轨道不平顺性,使用四分之一汽车模型导出轮轨相互作用力方程。使用2.5D有限元模型模拟了轨道结构和基础,并使用薄层单元模拟了地下土的边界。通过与京沪高铁的现场测量比较,验证了所建立的数值模型在振动响应分析中的可靠性。从现场测量中获得的响应数据的频谱分析显示,对于新建的高速铁路,由于打磨和校平操作,轨道对准处于良好状态,并且车辆参数主导了轨道结构的振动响应。然后研究了四种典型波长的轨道不平整度对轨道振动和周围地面环境的影响。已经发现,与较长波长的轨道不规则相比,较小波长的轨道不规则引起较高的振动频率,并且来自轨道和地面的振动响应明显更高。但是,与前者相比,后者引起的低频振动传播的距离更长。无the板轨道-地面系统的临界速度大于地基软层的瑞利波速度。当列车速度低于临界速度时,轨道不平整会严重影响轨道和周围地面的振动。当火车速度超过该临界速度时,地面振动由火车车轮重量(c)2015 Elsevier Ltd.确定。保留所有权利。

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