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Validation of three-dimensional multi-body system approach for modelling track flexibility

机译:验证三维多体系统方法对轨道灵活性的建模

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摘要

The objective of this investigation is to examine the results and demonstrate the validity of a proposed multi-body railroad vehicle system formulation that accounts for the dynamic coupling between three-dimensional (3D) contact parameters and the rail structural flexibility. This formulation allows building complex track models that include significant details at a finite-element preprocessing stage. The data of the detailed track model can be used as an input to a general purpose flexible multi-body computer program for a non-linear analysis that accounts for the dynamic coupling between the track flexibility, 3D wheel-rail contact, and the vehicle dynamics. The simulations are performed using the methods of multi-body system dynamics that employ 3D wheel-rail contact methodology capable of finding the wheel-rail contact points online. The effect of the structural flexibility of the rails is included in the equations of motion using the finite-element floating frame of reference formulation. While this formulation allows for an arbitrary reference displacement for the track, this reference displacement is constrained in order to be able to compare the results with those results obtained using simplified approaches. The results obtained by applying the proposed multi-body system/finite-element formulation to a simple railroad vehicle travelling on a deformable tangent track are compared with the results of a moving load on a Winkler foundation. In addition to the simple moving load model used, a second model that accounts for the effect of the vehicle inertia is also used in this study. The comparative study presented in this article shows a good agreement between the results obtained using the two different methods. Furtherinore, the results obtained in the case of a flexible track are compared with the results obtained using a rigid track in order to examine the effect of the track structural flexibility on the non-linear dynamics of the rail system.
机译:这项研究的目的是检查结果并证明所提出的多体铁路车辆系统公式的有效性,该公式考虑了三维(3D)接触参数与轨道结构柔性之间的动态耦合。此公式允许构建复杂的轨道模型,其中包括在有限元素预处理阶段的重要细节。详细的轨道模型的数据可用作通用灵活的多体计算机程序的输入,以进行非线性分析,该分析考虑了轨道灵活性,3D轮轨接触和车辆动力学之间的动态耦合。 。使用多体系统动力学方法进行仿真,该方法采用能够在线查找轮轨接触点的3D轮轨接触方法。使用参考公式的有限元浮动框架,在运动方程中包括了钢轨结构柔韧性的影响。虽然此公式允许为轨道使用任意参考位移,但此参考位移受到限制,以便能够将结果与使用简化方法获得的结果进行比较。将拟议的多体系统/有限元公式应用于在可变形切线轨道上行驶的简单铁路车辆上获得的结果与Winkler地基上的移动载荷的结果进行了比较。除了使用简单的移动负载模型之外,本研究还使用了第二个模型来说明车辆惯性的影响。本文提供的比较研究表明,使用两种不同方法获得的结果之间有很好的一致性。此外,将在柔性轨道的情况下获得的结果与使用刚性轨道的结果进行比较,以检验轨道结构的柔性对轨道系统非线性动力学的影响。

著录项

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  • 作者单位

    Department of Mechanical Engineering, University of Illinois at Chicago, 2031 Engineering Research Facility, 842 W. Taylor Street, Chicago, Illinois 60607, USA;

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

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

    Federal Railroad Administration, New Jersey Ave SE, Washington, DC, USA;

    Department of Mechanical Engineering, University of Illinois at Chicago, 2031 Engineering Research Facility, 842 W. Taylor Street, Chicago, Illinois 60607, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    railroad vehicles; track structural flexibility; multi-body system dynamics;

    机译:铁路车辆;跟踪结构的灵活性;多体系统动力学;

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