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EVALUATION OF RISK REDUCTION FROM TANK CAR DESIGN AND OPERATIONS IMPROVEMENTS -AN EXTENDED STUDY

机译:从坦克车设计和操作改进中降低风险的评估-扩展研究

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Critical derailment incidents associated with crude oil and ethanol transport have led to a renewed focus on improving the performance of tank cars against the potential for puncture under derailment conditions. Proposed strategies for improving puncture performance have included design changes to tank cars as well as operational considerations, such as reduced speeds and upgraded brake systems. In a prior paper on this topic, the authors conceptualized a novel and objective methodology for quantifying and characterizing the reductions in risk that result from changes to tank car design or to the tank car operating environment. This paper describes an extension of that effort to include additional derailment cases, additional operating speeds, considerations for alternate train configurations, such as Distributed Power (DP) and Electrically Controlled Pneumatic (ECP) brakes, as well as options for component level studies. In essence, the developed methodology considers key elements that are relevant to tank car derailment performance and combines these elements into a consistent probabilistic framework to estimate the relative merit of proposed mitigation strategies. The relevant elements considered include variations in the derailment scenarios, chaotic derailment dynamics, the distribution of impact loads and impactor sizes, various operating speeds, brake system differences, and variations in tank car design. The paper also provides an overview of the validation efforts which suggest that the gross dynamics of a tank car train derailment, and the resulting puncture performance of the tank cars, are captured well by this methodology.
机译:与原油和乙醇运输相关的重大脱轨事件导致人们重新集中精力提高油罐车的性能,以防脱轨条件下发生爆胎。提出的改善穿刺性能的策略包括对油罐车进行设计变更以及诸如降低速度和升级制动系统等操作注意事项。在关于该主题的先前论文中,作者构思了一种新颖,客观的方法,用于量化和表征因油罐车设计或油罐车运行环境变化而导致的风险降低。本文介绍了这项工作的扩展,包括其他脱轨情况,其他运行速度,对备用火车配置(例如分布式动力(DP)和电控气动(ECP)制动器)的考虑以及组件级研究的选件。从本质上讲,已开发的方法论考虑了与油罐车脱轨性能相关的关键要素,并将这些要素组合到一个一致的概率框架中,以估算拟议缓解策略的相对价值。考虑的相关要素包括脱轨情况下的变化,混沌脱轨动力学,冲击载荷和冲击器尺寸的分布,各种运行速度,制动系统差异以及油罐车设计的变化。本文还概述了验证工作,这些工作表明,此方法可以很好地反映出油罐车火车脱轨的总体动力以及由此产生的油罐车的穿刺性能。

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