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A Norwegian case study on the production of hydrogen from wind power

机译:挪威关于风能制氢的案例研究

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摘要

A method for assessment of wind-hydrogen (H_2) energy systems is presented. The method includes chronological simulations and economic calculations, enabling optimised component sizing and calculation of H_2 cost. System components include a wind turbine, electrolyser, compressor, storage tank and power converter. A case study on a Norwegian island is presented. The commuting ferry is modelled as a H_2 ferry, representing the H_2 demand. The evaluation includes a grid-connected system and an isolated system with a backup power generator. Simulation results show that much larger components are needed for the isolated system. H_2 cost amounted to 2.8 ?/kg and 6.2 ?/kg for the grid-connected and isolated system, respectively. Sensitivity analyses show that a marginal decrease in wind turbine and electrolyser cost will reduce the H_2 cost substantially. Rate of return is also important due to high investment costs. The grid-connected system is by far the most economical, but the system involves frequent grid interaction.
机译:提出了一种评估风氢(H_2)能源系统的方法。该方法包括时间顺序仿真和经济计算,从而实现了优化的组件尺寸和H_2成本的计算。系统组件包括风力涡轮机,电解槽,压缩机,储罐和功率转换器。介绍了一个在挪威岛上的案例研究。通勤渡轮建模为H_2渡轮,代表H_2需求。评估包括并网系统和带备用发电机的隔离系统。仿真结果表明,隔离系统需要更大的组件。并网和隔离系统的H_2成本分别为2.8?/ kg和6.2?/ kg。敏感性分析表明,风力涡轮机和电解槽成本的小幅下降将大大降低H_2成本。由于高昂的投资成本,回报率也很重要。并网系统到目前为止是最经济的,但是该系统涉及频繁的电网交互。

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