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Force and ground vibration reduction of railway tracks with elastic elements

机译:带有弹性元件的铁路轨道的力和地面振动减小

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The reduction of train-induced ground vibration by elastic elements such as rail pads and sleeper pads has been analyzed by a combined finite-element boundary-element method. The dynamic compliance of the track, the transfer function of the total force on the ground and the ground vibration ratios have been calculated for a variety of isolated and un-isolated track systems. It has been found that the soil force transfer, which describes the excitation force of the soil, is an appropriate quantity to predict the reduction of the ground vibration and the effectiveness of isolated tracks. All force transfer functions of isolated tracks display a vehicle-track resonance where the wheelset on the compliant track is excited by wheel and track irregularities. At higher frequencies, considerable reductions of the amplitudes are observed as the benefit of the resilient element. The influence of the stiffness of the rail or sleeper pads, the ballast and the soil, and the mass of the sleeper and the wheelset on the resonance frequency and the reduction has been investigated. Sleeper pads are advantageous due to the higher mass that is elastically supported compared to the rail-pad track system. The combination of elastic rail and sleeper pads has been found to be disadvantageous, as the second resonance occurs in the frequency range of intended reduction.
机译:通过组合有限元边界元方法分析了通过弹性元件(例如,轨道垫和轨枕)减少火车引起的地面振动。对于各种隔离和非隔离的轨道系统,已经计算出轨道的动态柔度,总力在地面上的传递函数以及地面振动比。已经发现,描述土壤的激发力的土壤力传递是预测地面振动的减小和孤立轨道的有效性的适当量。隔离轨道的所有力传递功能都会显示车辆轨道共振,其中顺应性轨道上的轮对会因车轮和轨道不规则而受到激励。在较高的频率下,作为弹性元件的优点,观察到幅度的显着减小。已经研究了轨道或轨枕垫,压载物和土壤的刚度以及轨枕和轮对的质量对共振频率和减小的影响。枕木垫是有利的,因为与轨枕轨道系统相比,它具有更高的弹性支撑质量。已经发现,弹性轨和轨枕的结合是不利的,因为第二共振发生在预期降低的频率范围内。

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