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TANK CAR SLOSHING ON RAIL TRANSPORTATION SAFETY UNDER VARIOUS LOADING, TRACK AND IN-TRAIN FORCE CONDITIONS

机译:各种载荷,履带和列车内力条件下铁路运输安全上的坦克车晃动

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Analytical work was conducted to study if movement of liquid in a tank car (or sloshing) could contribute in any way to derailments of trains carrying dangerous goods liquids. A liquid sloshing model was developed for railway tank car with formulas generated based on available finite element analysis data. An empty tank car dynamics simulation model validated with measured data was used as the base model to implement the liquid sloshing model. Hundreds of thousands of dynamics simulations were conducted for the tank car with liquid cargo at various fill ratios and with equivalent solid (i.e., rigid) cargo on more than 1000 measured curves. The results show that under some conditions tank car sloshing could increase the risk of derailment. The detrimental effect of tank car sloshing on rail safety increases with the increase of outage, trailing tonnage, grade, car length difference, curvature, train speed and track geometry irregularities. Quantitative risk analysis could be improved by considering the effects of tank car sloshing on derailment risk. The findings can be used by regulators and the railroads to improve train marshalling practice and risk mapping of railway networks.
机译:进行了分析工作,以研究罐车中的液体运动(或晃荡)是否可能以任何方式导致运载危险货物液体的火车脱轨。为铁路油罐车开发了液体晃荡模型,并基于可用的有限元分析数据生成了公式。用实测数据验证的空罐车动力学仿真模型作为基础模型来实现液体晃荡模型。对油罐车进行了成千上万的动力学模拟,以不同填充率的液态货物和等效的固体(即,刚性)货物在1000条以上的测量曲线上进行了模拟。结果表明,在某些情况下,油罐车晃动可能会增加脱轨的风险。随着停运,尾随吨位,坡度,车长差,曲率,列车速度和轨道几何形状不规则性的增加,油罐车晃动对铁路安全的不利影响也增加。通过考虑油罐车晃动对脱轨风险的影响,可以改进定量风险分析。监管机构和铁路公司可以使用这些发现来改善火车编组实践和铁路网络的风险图。

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