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Modeling behaviour of railway ballast in prismoidal apparatus using discrete element method

机译:基于离散元法的棱柱形设备中道ball的建模行为

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摘要

This article presents the results of numerical simulations of loading tests conducted on coarse particles that simulate railroad ballast. The objective of this study was to evaluate the deformation of ballast under vertical loading and to study the influence of the two different particle size distributions. One of them was according to particle size distribution recommended by Indraratna and co-workers in the past as an improvement to Australian Standard and the other was prepared in accordance with Brazilian standard. The discrete element method offers a new means of studying the response characteristics of railway ballast. The basic idea of discrete element method (DEM) is that arbitrary discontinuities are divided into a set of rigid elements, making each rigid element satisfy the equations of motion, use time step iteration method for solving the equations of motion of rigid elements, and then obtain the overall movement patterns of arbitrary discontinuities. In this study, the discrete element method of analysis has been used to simulate the geotechnical behaviour of railway ballast observed during the triaxial testing. Three-dimensional numerical simulations were performed using discrete element modeling approach.
机译:本文介绍了在模拟铁路道ast的粗颗粒上进行载荷试验的数值模拟结果。这项研究的目的是评估压载物在垂直载荷下的变形,并研究两种不同粒径分布的影响。其中一种是根据Indraratna及其同事过去推荐的粒度分布,作为对澳大利亚标准的改进,另一种是根据巴西标准制备的。离散元法为研究铁路道ast的响应特性提供了一种新的手段。离散元素方法(DEM)的基本思想是将任意不连续点分为一组刚性元素,使每个刚性元素都满足运动方程,使用时步迭代法求解刚性元素的运动方程,然后获得任意不连续点的整体运动模式。在这项研究中,分析的离散元素方法已被用于模拟在三轴测试过程中观察到的铁路道ast的岩土行为。使用离散元素建模方法进行了三维数值模拟。

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