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Modeling vehicle and rail vibrations due to the passage of high speed trains using coupled traveling and stationary finite element models.

机译:使用耦合的行进和固定有限元模型对由于高速列车通过而引起的车辆和轨道振动进行建模。

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摘要

Increasing interest in developing high speed lines is driving research on the effects of incorporating high speed trains into existing rail infrastructure. Simulating vibrations through rail and soil substructures is a complex task, and has been the subject of research for decades. As computational technology and dynamic modeling theory develop, the potential for creating higher detail systems increases, and studies have continuously involved more realism. In this thesis, work to develop an efficient computational tool for the examination of vibrations in the train, track, and ground, using a time-domain procedure that couples a finite element model of the track and train is detailed. This paper specifically discusses the formulation of the train and track models and their simulation using a coupling scheme. The train model has multiple degrees of freedom, and includes multiple train cars, bogies, and wheels. The track is modeled using Timoshenko beams for the rail so the shear and rotational effects on the rail due to the combined vertical and longitudinal forces exerted by the train onto the rail can be considered. Shape functions are implemented to determine the equivalent nodal forces acted on the rail by the traveling train. The coupling methodology and shape function force and displacement interpolation are validated through comparisons with a baseline finite element model of the joint track and train. Parametric studies concerning rail damping, stiffness, and irregularities of the wheel and train profile are conducted, and the impact of the various train and rail properties is examined.
机译:对开发高速铁路的兴趣日益浓厚,正在推动有关将高速火车纳入现有铁路基础设施的效果的研究。通过轨道和土壤子结构模拟振动是一项复杂的任务,并且数十年来一直是研究的主题。随着计算技术和动态建模理论的发展,创建更详细的系统的潜力也在增加,并且研究不断涉及更多的现实主义。在本文中,研究工作开发了一种有效的计算工具,该工具使用时域过程将轨道,火车的有限元模型耦合在一起,以检查火车,轨道和地面的振动。本文专门讨论了火车和轨道模型的制定及其使用耦合方案的仿真。火车模型具有多个自由度,并且包括多个火车车厢,转向架和车轮。轨道使用Timoshenko梁对轨道进行建模,因此可以考虑由于火车施加在轨道上的垂直和纵向力的组合而对轨道产生的剪切和旋转效应。实施形状函数来确定行驶的列车作用在轨道上的等效节点力。通过与联合轨道和列车的基线有限元模型进行比较,验证了耦合方法,形状函数力和位移插值。进行了有关轨道阻尼,刚度以及车轮和火车轮廓不规则性的参数研究,并研究了各种火车和轨道特性的影响。

著录项

  • 作者

    Matthews, Luke Ashlin.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2010
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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