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Numerical investigations on the fast filling of hydrogen tanks

机译:氢气罐快速注水的数值研究

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High-pressure storage of hydrogen in tanks is a promising option to provide the necessary fuel for transportation purposes. The fill process of a high-pressure tank should be reasonably short but must be designed to avoid too high temperatures in the tank. The shorter the fill should be the higher the maximum temperature in the tank climbs. For safety reasons an upper temperature limit is included in the requirements for refillable hydrogen tanks (ISO 15869) which sets the limit for any fill optimization. It is crucial to understand the phenomena during a tank fill to stay within the safety margins. The paper describes the fast filling process of hydrogen tanks by simulations based on the Computational Fluid Dynamics (CFD) code CFX. The major result of the simulations is the local temperature distribution in the tank depending on the materials of liner and outer thermal insulation. Different material combinations (type III and IV) are investigated. Some measurements from literature are available and are used to validate the approach followed in CFX to simulate the fast filling of tanks. Validation has to be continued in the future to further improve the predictability of the calculations for arbitrary geometries and material combinations.
机译:储罐中氢气的高压存储是为运输目的提供必要燃料的一种有前途的选择。高压罐的填充过程应相当短,但必须设计成避免罐中温度过高。填充时间越短,罐内爬升的最高温度越高。出于安全原因,可再填充氢气罐的要求中包括温度上限(ISO 15869),该上限为任何填充优化设定了上限。了解油箱加注期间的现象以确保在安全范围内是至关重要的。本文通过基于计算流体动力学(CFD)代码CFX的仿真描述了氢罐的快速填充过程。模拟的主要结果是取决于衬里和外部隔热材料的储罐中的局部温度分布。研究了不同的材料组合(类型III和IV)。从文献中可以得到一些测量值,这些测量值用于验证CFX中所采用的方法来模拟储罐的快速填充。将来必须继续进行验证,以进一步提高针对任意几何形状和材料组合的计算的可预测性。

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