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IMPROVED TANK CAR SAFETY RESEARCH

机译:改进的坦克汽车安全研究

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摘要

Three recent accidents involving the release of hazardous material have focused attention on the structural integrity of railroad tank cars: (1) Minot, ND, on January 18, 2002; (2) Macdona, TX, on June 28, 2004; and (3) Graniteville, SC, on January 6, 2005. Each of these accidents resulted in fatalities. Research is being conducted to develop strategies for improving railroad tank cars so they can maintain tank integrity in severe accidents. A collaborative effort called the Next Generation Rail Tank Car (NGRTC) Project intends to use these research results to help develop improved tank car designs. Dow Chemical Company, Union Pacific Railroad, and Union Tank Car Company are the industry sponsors of the NGRTC Project. The Federal Railroad Administration (FRA) and Transport Canada participate in the NGRTC project through Memoranda of Cooperation. FRA and the Pipeline and Hazardous Materials Safety Administration intend to use these research results to support rulemaking. The approach taken in performing this research is to define the collision conditions of concern, to evaluate the behavior of current design equipment in these scenarios, and to develop alternative strategies for increasing the maximum impact speed for which tank integrity is maintained. The accident scenarios have been developed from a review of accidents and are intended to bound the range of main-line accidents that can lead to a release of hazardous material from a tank car. The accident scenarios and collision modes have been used to define car-to-car impact scenarios. These car-to-car impact scenarios define the conditions under which the commodity must be contained. The impact scenarios are being used to evaluate the integrity of current design and improved design tank cars. Full-scale impact tests are also being conducted, to help validate modeling of the baseline equipment. The models have been refined based on the test results. The models are now being applied to develop the improved equipment designs. This paper describes the overall research framework and provides an overview of the research done to date, as well as the planned efforts.
机译:最近涉及危险物质释放的三次事故侧重于一辆铁路坦克汽车的结构完整性:(1)Minot,ND,2002年1月18日; (2)2004年6月28日,德克萨斯州麦多纳; (3)Graniteville,SC,2005年1月6日。这些事故中的每一个都导致了死亡。正在进行研究以开发改善铁路坦克汽车的策略,以便在严重事故中保持坦克完整性。一种称为下一代铁路坦克汽车(NGRTC)项目的合作努力打算利用这些研究结果来帮助开发改进的坦克汽车设计。陶氏化学公司,联盟太平洋铁路和联盟坦克汽车公司是NGRTC项目的行业赞助商。联邦铁路管理局(FRA)和运输加拿大通过合作备忘录参加NGRTC项目。 FRA和管道和危险材料安全管理局打算使用这些研究结果来支持统治。在进行这项研究中采取的方法是定义关注的碰撞条件,以评估当前设计设备在这些场景中的行为,并开发用于增加维持坦克完整性的最大冲击速度的替代策略。事故情景已经从事事故审查制定,旨在绑定可能导致坦克汽车释放有害物质的主线事故范围。事故情景和碰撞模式已被用于定义汽车到汽车的影响情景。这些汽车到车的影响场景定义了必须包含商品的条件。影响情景用于评估当前设计和改进的设计坦克汽车的完整性。还正在进行全面的冲击测试,以帮助验证基线设备的建模。该模型基于测试结果精制。现在正在应用模型来开发改进的设备设计。本文介绍了整体研究框架,并提供了迄今为止的研究概述,以及计划的努力。

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