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Analysis of Fuel Cell Vehicles Equipped with Compressed Hydrogen Storage Systems from a Road Accident Safety Perspective

机译:从道路交通安全角度分析配备压缩氢存储系统的燃料电池汽车

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The potential impact of real world accident scenarios on fuel cell vehicles equipped with a compressed hydrogen storage system is analyzed from a component point of view. Even though hydrogen compressed gas tanks can sustain very high loads, in this study a simplification is made. It is investigated to what extent different real world accident scenarios with conventional vehicles have caused deformation of the vehicle in the area where a hydrogen tank would have been integrated in a fuel cell vehicle. The study is based on accident data from the GIDAS (German In-Depth Accident Study) database. Deformation matrices for each passenger car in the database are defined over a deformation grid largely independent of vehicle type and shape. The matrices are combined to statistically analyze the occurrence of deformations in selected regions of a vehicle. The concept of cumulative frequencies is extended to two dimensional deformation matrices defined over a set of accident cases and a new algorithm is applied to calculate the cumulative frequency matrix which is discussed for the GIDAS sample. In addition, accidents which resulted in an intrusion up to an area where the compressed gas tank would likely be located are further investigated with respect to the situation in which they happened.
机译:从组件的角度分析了现实世界中发生的事故对配备压缩氢存储系统的燃料电池汽车的潜在影响。尽管氢气压缩气罐可以承受很高的负荷,但在本研究中还是进行了简化。调查了在不同的现实世界中,常规车辆发生的事故情景在多大程度上导致了该车辆在将氢气罐集成到燃料电池车辆中的区域中变形。该研究基于来自GIDAS(德国深度事故研究)数据库的事故数据。数据库中每个乘用车的变形矩阵都在变形网格上定义,而变形网格在很大程度上与车辆的类型和形状无关。组合矩阵以统计分析车辆所选区域中变形的发生。累积频率的概念扩展到了在一组事故案例中定义的二维变形矩阵,并且应用了一种新算法来计算累积频率矩阵,该矩阵将针对GIDAS样本进行讨论。另外,针对发生事故的地方,进一步调查了导致可能进入压缩气体储罐的区域的侵入事件。

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