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Ride dynamic analysis of guided pneumatic-tired subway car.

机译:引导式充气轮胎地铁车的行驶动力学分析。

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摘要

In the Montreal metro system, the metro cars operate on pneumatic tires as opposed to the steel wheels and rail tracks used in most subway systems. This type of traction system provides relatively quieter and smoother operation. Despite the use of pneumatic tires and a very smooth concrete track, the Montreal metro cars exhibit complex vibration environment, that arises from dynamic tire-track interactions, and coupled dynamics of vehicle components, namely, axle, bogie and the car body.; In this investigation, a 23 degrees-of-freedom, three dimensional ride dynamic mathematical model of the Montreal metro car is developed to study the ride performance under deterministic as well as measured track excitations. The model integrates excitations due to left- and right track surface roughness, and wheel non-uniformity. The wheel non-uniformity is modeled as a combination of an equivalent mass unbalance and out-of-roundness of the tread geometry. The validity of the model is demonstrated by comparing the response characteristics with available measured data. The ride quality of the vehicle at operator's level is assessed in relation to the proposed guidelines upon applying the recommended frequency-weighting filters. The ride responses revealed comprehensive vertical vibration in the vicinity of 6 Hz to which the human body is known to be more sensitive. High magnitude of vertical s vibration near 6 Hz became evident at near the nominal operating speed of 60 km/h, and was associated with wheel non-uniformity and vertical mode resonance of the bogie.; The influence of variations in design and operating variables on the ride performance of the metro car is investigated through a comprehensive parametric study. The variations in operating conditions include the forward speed of the metro car and passenger load. The parametric study on design variables includes the variations in the inertial properties of the vehicle components, namely, car body, bogie and axle and variations in suspension properties. The results of the study are discussed to highlight the contributions of these parameters on the ride quality, and to identify most desirable design and operating conditions. Finally, a set of optimal parameters is identified and then comparison is made between nominal and optimal set of design parameters.
机译:在蒙特利尔地铁系统中,与大多数地铁系统中使用的钢轮和铁轨相反,地铁车辆使用的是充气轮胎。这种类型的牵引系统可提供相对更安静,更平稳的操作。尽管使用了充气轮胎和非常光滑的混凝土轨道,但蒙特利尔地铁车厢仍表现出复杂的振动环境,这是由于轮胎-轨道之间的动态相互作用以及车体,车轴,转向架和车体的耦合动力学引起的。在这项调查中,开发了蒙特利尔地铁车厢的23自由度三维行驶动力学数学模型,以研究确定性和测量的轨道激励下的行驶性能。该模型整合了由于左右轨道表面粗糙度以及车轮不均匀性而产生的激励。车轮不均匀性被建模为等效质量不平衡和胎面几何形状的不圆度的组合。通过将响应特性与可用的测量数据进行比较,证明了模型的有效性。在应用推荐的频率加权滤波器后,将根据建议的指南评估驾驶员在水平上的车辆行驶质量。行驶响应显示了在6 Hz附近的全面垂直振动,已知人体对此更为敏感。接近60 Hz / h的额定工作速度时,在6 Hz附近出现了很大的垂直振动,这与车轮的不均匀性和转向架的垂直模式共振有关。通过全面的参数研究,研究了设计和操作变量变化对地铁车辆行驶性能的影响。运行条件的变化包括地铁的前进速度和载客量。对设计变量的参数研究包括车辆部件(如车身,转向架和车轴)的惯性特性的变化以及悬架特性的变化。讨论了研究结果,以突出这些参数对乘坐质量的贡献,并确定最理想的设计和操作条件。最后,确定一组最佳参数,然后在名义设计参数和最佳设计参数之间进行比较。

著录项

  • 作者

    Rafat, Yasser.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2007
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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