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Experimental and Analytical Ride Comfort Evaluation of a Railway Coach

机译:铁路客车乘骑舒适性的实验和分析评价

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The dynamic performance of a railroad vehicle as related to safety is evaluated in terms of specific performance indices like ride quality. The ride quality is interpreted as the capability of the railroad vehicle suspension to maintain the motion within the range of human comfort and or within the range necessary to ensure that there is no damage to the cargo it carries. The recent trend in dynamic analysis is to make use of finite element (FE) models, which are closer to the real systems than conventional rigid body models. Experimental and analytical evaluation of Sperling’s ride index and ISO 2631 ride comfort analysis of a suburban railroad vehicle using an elaborate finite element model is presented in this paper. The track power spectral densities (PSDs) were used as inputs to the system and the response predictions were carried out using random vibration theory. Measurements were also made at different parts on the coach and bogie of an electrical multiple unit trailer (AC/EMU/T) running on a broad gauge (1676 mm) suburban track to obtain the dynamic response under normal operating conditions. A comparison of predicted ride index and measured ride index has been presented. A through parametric study has brought out possible design modifications for better ride index and ride comfort.
机译:根据诸如行驶质量之类的特定性能指标来评估与安全相关的铁路车辆的动态性能。行驶质量被解释为铁路车辆悬架将运动保持在人类舒适度范围内或在确保对所载货物无损害的必要范围内的能力。动态分析的最新趋势是利用有限元(FE)模型,该模型比常规刚体模型更接近真实系统。本文提出了使用精巧的有限元模型对郊区铁路车辆的Sperling行驶指数和ISO 2631行驶舒适性进行实验和分析评估。跟踪功率谱密度(PSD)用作系统的输入,并使用随机振动理论进行了响应预测。还对在郊区(1676 mm)宽轨上运行的多单元电动拖车(AC / EMU / T)的客车和转向架的不同部位进行了测量,以获取正常工作条件下的动力响应。提出了预测的行驶指数和测量的行驶指数的比较。一项通过参数的研究提出了可能的设计修改方案,以实现更好的行驶指数和行驶舒适性。

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