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Shakedown analysis of ballasted track structure using three-dimensional finite element techniques

机译:采用三维有限元技术的镇流轨道结构分析

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Shakedown analysis is an attractive method for determining the capacity of geostructures to sustain repeated loads involving a large number of cycles, e.g. rolling and sliding train wheel loads. Its main advantage is that it comes at a significantly reduced computational cost, compared to standard time-domain analyses. An essential component of shakedown analysis is the derivation of closed-form solutions to compute stresses due to the external repeated loads, a task that is not always feasible for complex problems as the ballasted rail track discussed herein. To tackle this, we present in this paper the use of finite element tools to obtain a quasi-lower-bound shakedown load numerically. The proposed method is based on the computation of the three-dimensional elastic stress field numerically, and the estimation of the shakedown load iteratively via an optimisation subroutine implemented in ABAQUS. Following a short presentation of this concept, we compare the elastic stress fields from models featuring varying degree of complexity, with the aim of identifying an optimal discretisation of the problem. This approach can be used for optimising the design of ballasted track structure, and this concept is briefly presented via a parametric study.
机译:Shapledown分析是一种有吸引力的方法,用于确定地质结构以维持涉及大量循环的重复载荷的容量。滚动和滑动火车轮负载。其主要优点是,与标准时间域分析相比,它以显着降低的计算成本。 Shakedown分析的基本组分是由于外部重复载荷而计算应力的闭合溶液的推导,这是在本文所讨论的凸轮滑轨轨道上的复杂问题并不总是可行的任务。为了解决这个问题,我们在本文中展示了使用有限元工具以在数值上获得准束缚的Shakingown负载。所提出的方法基于数​​值上的三维弹性应力场的计算,并且通过在ABAQU中实现的优化子程序迭代地估计Shakedrown负载。在短暂介绍这一概念之后,我们将弹性应力场与具有变化程度不同的模型进行比较,目的是识别问题的最佳自由度。这种方法可用于优化镇流轨道结构的设计,并且通过参数研究简要呈现该概念。

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