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Dynamic simulation for optimal hydrogen refueling method to Fuel Cell Vehicle tanks

机译:燃料电池汽车油箱最佳加氢方法的动态仿真

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A dynamic simulation approach to investigate an optimal hydrogen refueling method is proposed. The proposed approach simulates a transient temperature, pressure and mass flow rate of hydrogen flowing inside filling equipment in an actual station during the refueling process to an Fuel Cell Vehicle (FCV) tank. The simulation model is the same as in an actual hydrogen refueling station (HRS), and consists of a Break-Away, a hose, a nozzle, pipes and an FCV tank. Therefore, we can set actual configurations and thermal properties to the simulation model, and then simulate the temperature, pressure and mass flow rate of hydrogen passing through each position based on the supply conditions (temperature and pressure) at the Break-Away. In this study, the simulated temperature, pressure and mass flow rate are compared with the corresponding experimental data. Therefore, we show that the dynamic simulation approach can accurately obtain those values at each position during the refueling process and is an effective step in proposing the optimal refueling method. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种动态模拟方法,以研究最佳的加氢方法。拟议的方法模拟了在实际加油过程中向燃料电池车(FCV)油箱加油的过程中,氢气在填充站内部流动的瞬时温度,压力和质量流量。该模拟模型与实际的氢燃料加注站(HRS)相同,并且由一个可脱开装置,软管,喷嘴,管道和FCV燃料箱组成。因此,我们可以为模拟模型设置实际的配置和热特性,然后根据断裂处的供应条件(温度和压力)模拟通过每个位置的氢气的温度,压力和质量流率。在这项研究中,将模拟的温度,压力和质量流率与相应的实验数据进行了比较。因此,我们表明,动态仿真方法可以在加油过程中准确地获得每个位置的值,并且是提出最佳加油方法的有效步骤。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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