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Analysis on dynamic performance of different track transition forms using the discrete element/finite difference hybrid method

机译:不同元件/有限差异混合方法不同轨道转换形式的动态性能分析

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摘要

To analyze the mesodynamic and macrodynamic performance of the track transitions more precisely, a bridge-embankment transition model has been established by combining the discrete element method (DEM) with the finite difference method (FDM). In this model, the DEM is utilized to model sleepers and ballast particles with complex shape, and the FDM is applied to simulate the abutment, transition section and embankment. The DEM/FDM coupled model is then achieved by exchanging displacements, velocities, and contact forces at the interface. Afterwards, the influence of the transition section parameters and transition forms on dynamic behaviour of the track-substructure system is studied under measured rail seat load. The numerical simulations indicate that the increase of the transition section elastic modulus, decrease of the backfill slope values and the transition form of trapezoid backfill following by inverted trapezoid backfill can provide a better displacement gradient between the abutment and the embankment. Additionally, the results show that the inverted trapezoid transition form can provide a better transition of the track dynamic performance than the trapezoid transition form and the embankment soil over the wedge-shape backfill has the tendency to propagate along the slope toward the embankment section under the moving train load for the trapezoid transition form. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了更确切地说,通过将离散元件方法(DEM)与有限差分法(FDM)组合来建立桥接器转换模型的磁化动力学和宏观动力学性能。在该模型中,DEM用于模拟具有复杂形状的枕木和镇流器颗粒,并且施加FDM以模拟邻接,过渡部分和堤防。然后通过在界面处交换位移,速度和接触力来实现DEM / FDM耦合模型。然后,在测量的轨道座载荷下,研究了转变部分参数和转换形式对轨道 - 子结构系统的动态行为的影响。数值模拟表明过渡部分弹性模量的增加,回填坡度值的减小和倒梯回填的梯形回填的过渡形式可以在邻接和堤防之间提供更好的位移梯度。另外,结果表明,倒梯形转变形式可以提供比梯形过渡形式更好地转换楔形过渡形成,并且楔形回填的路堤土壤具有沿着斜坡朝向堤坝部分传播的倾向移动梯形过渡表的火车负荷。 (c)2019 Elsevier Ltd.保留所有权利。

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