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Optimizing the design of railway tank cars to minimize accident-caused releases

机译:优化铁路罐车的设计,以最大程度减少事故造成的排放

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摘要

The design of vehicles transporting hazardous materials has important public safety and economic implications. Conventional wisdom among industry and government has held that a thicker tank on railroad tank cars and trucks reduces risk. However, a thicker tank increases vehicle weight and thus leads to an increase in the number of shipments required to transport the same amount of product and consequently greater exposure to accidents. In this research we develop a model that analyzes the tradeoff between increased damage resistance and greater exposure to accidents in which the objective function is minimization of the probability of release. The model accounts for the reduction in tank car release probability as a function of tank thickness, and the increased exposure to accidents that occurs due to the increased number of shipments needed for the heavier car. Three variables affecting this optimal thickness are considered in this paper: the volumetric capacity of the tank, the probability of release from other, non-tank sources, and the weight capacity of the car. Sensitivity analyses using the model indicate that for any particular configuration of tank car there is an optimal thickness. This optimal thickness is affected by several factors and there is no single optimum for all tank cars.
机译:运输危险材料的车辆的设计具有重要的公共安全和经济意义。工业界和政府的传统观念认为,铁路油罐车和卡车上的油罐较厚可以降低风险。但是,较厚的油箱会增加车辆的重量,从而导致运输相同量产品所需的装运次数增加,因此更容易发生事故。在这项研究中,我们开发了一个模型,该模型分析了增加的抗破坏性与更大的事故暴露之间的权衡,其中目标函数是释放概率最小。该模型说明了随油箱厚度而变化的油箱车释放概率的降低,以及由于较重的车辆所需的装运数量增加而导致发生事故的风险增加。本文考虑了影响该最佳厚度的三个变量:储罐的容积,从其他非储罐源中释放的可能性以及汽车的重量。使用该模型进行的灵敏度分析表明,对于罐车的任何特定配置,都存在最佳厚度。最佳厚度受几个因素的影响,没有针对所有罐车的最佳厚度。

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