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Modelling ballast behaviour under dynamic loading. Part 1: A 2D polygonal discrete element method approach

机译:在动态载荷下对镇流器行为进行建模。第1部分:二维多边形离散元素方法

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Discrete element simulation provides some insight into the alteration of railway ballast after repeated train passings. The present Part 1 is devoted to a 2D model of this granular layer interposed between the deformable ground and the rail sleeper, to which a large number of loading cycles is applied. Ballast grains are modelled as indeformable polygonal solids. A detailed account of the application to this frictional dynamical problem of the Non-Smooth Contact Dynamics numerical method is given. Validation is obtained through comparison with physical experiments performed on assemblies of prismatic mineral grains. Numerical results on the settlement of a track submitted to 20,000 loading cycles or more are presented.
机译:离散元素模拟为重复经过火车后的铁路道ast变化提供了一些见识。当前的第1部分专门研究了介于可变形地面和轨枕之间的该颗粒层的2D模型,并对其施加了许多加载循环。压载颗粒被建模为不变形的多边形固体。详细介绍了非光滑接触动力学数值方法在该摩擦动力学问题中的应用。通过与对棱柱形矿物颗粒的装配体进行的物理实验进行比较来获得验证。给出了经过20,000次或以上装载循环的轨道沉降的数值结果。

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