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Comparison of experimental results with simulation of a PEM Electrolyzer powered by a horizontal wind turbine

机译:实验结果与水平风力发电机供电的PEM电解槽的仿真比较

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In this paper, one small wind turbine is used to power an Electrolyzer unit to separate the water into hydrogen and oxygen gases. Two volt voltage and 1 amp current were supplied to the Electrolyzer in order to produce hydrogen through the fuel cell unit. The electrical equivalent circuit for the proton exchange membrane Electrolyzer was developed and implemented in MATLAB/Simulink along with the atmospheric hydrogen storage tank. The hydrogen production was measured during the tests and evaluated running the simulation in order to compare the simulated and experimental results. The hydrogen amount is measured to be 6.99 (ml/min A) from the experimental set up as well as the model to be 7.24(ml/min A). The DC-DC buck converter was added to the Horizon kit to regulate the voltage to be 2 volts. The experimental and simulation results featured an error of 3.6 %.
机译:在本文中,使用一台小型风力涡轮机为电解装置提供动力,以将水分离为氢气和氧气。向电解器提供2伏电压和1安培电流,以通过燃料电池单元产生氢。质子交换膜电解槽的等效电路与大气氢存储罐一起在MATLAB / Simulink中开发和实现。在测试过程中测量了氢气产生量,并在运行模拟时对其进行了评估,以比较模拟结果和实验结果。根据实验设置测得的氢气量为6.99(ml / min A),而模型测得的氢气量为7.24(ml / min A)。在Horizo​​n套件中添加了DC-DC降压转换器,以将电压调节为2伏。实验和仿真结果的误差为3.6%。

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