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MODELING RAIL FLEXIBILITY USING FINITE ELEMENT AND FINITE SEGMENT METHODS

机译:使用有限元和有限分段方法对铁路柔韧性进行建模

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摘要

Safety requirements and optimal performance of railroad systems require the utilization of multibody System (MBS) formulations that allow for modeling flexible bodies. This investigation will present three methods suited for the study of flexible track models while conclusions about their implementations and features are made. A validated method combining Floating Frame of Reference (FFR) and Finite Element (FE) to model flexible rails is utilized for comparison. In this procedure, component mode synthesis is used to extract a number of low-frequency modes of vibration which describe the deformation of the rail. Likewise, a method that discretizes the flexible body as a finite number of rigid elements that are linked by springs and dampers is applied for railroad simulations. This method, called Finite Segment or Rigid Finite Element (FS), can in turn be combined with FFR through the extraction of mode shapes of the FS model. Convergence of the methods is analyzed. A comparison will be made between these three procedures establishing differences among them and analyzing the specific application of FS to modeling track flexibility. The three aforementioned procedures may be applied to three-dimensional track models and will be used together with three-dimensional wheel/rail contact formulation that predicts contact points online and allows for updating the creepages to account for the rail movements and deformations. Several comparisons and conclusions will be drawn in view of the results obtained in this investigation.
机译:铁路系统的安全要求和最佳性能要求利用多体系统(MBS)公式,以便对柔性体进行建模。这项调查将提出三种适用于柔性轨道模型研究的方法,并得出有关其实现和功能的结论。结合参考浮动框架(FFR)和有限元(FE)来建模柔性导轨的一种经过验证的方法可用于比较。在此过程中,使用成分模式合成来提取描述轨道变形的许多低频振动模式。同样,将弹性体离散化为通过弹簧和阻尼器链接的有限数量的刚性元件的方法也用于铁路仿真。这种方法称为有限分段或刚性有限元(FS),可以通过提取FS模型的模式形状来与FFR组合。分析了方法的收敛性。将对这三个过程进行比较,以建立它们之间的差异,并分析FS的特定应用以建模轨道灵活性。前面提到的三个过程可以应用于三维轨道模型,并将与三维轮/轨接触公式一起使用,该公式可以在线预测接触点并允许更新爬电距离以解决轨道的运动和变形。鉴于本次调查的结果,将得出一些比较和结论。

著录项

  • 来源
  • 会议地点 Pueblo CO(US);Pueblo CO(US)
  • 作者单位

    Department of Mechanical and Industrial Engineering University of Illinois at Chicago Chicago, IL 60607, USA;

    Department of Mechanical and Materials Engineering University of Seville Seville, Spain;

    Department of Mechanical and Materials Engineering University of Seville Seville, Spain;

    Department of Mechanical and Industrial Engineering University of Illinois at Chicago Chicago, IL 60607, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 铁路运输;
  • 关键词

  • 入库时间 2022-08-26 14:08:39

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