HOMER optimization of standalone PV/Wind/Battery powered hydrogen refueling stations located at twenty selected French cities

Fakher Oueslati
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Abstract

The current study proposes a model of autonomous Hydrogen Refuelling Stations (HRFS) installed on different sites in twenty French cities powered by renewable clean energy sources. The station is fully powered by photovoltaic (PV) panels, wind turbines with battery storage and involving an electrolyzer and hydrogen tank for producing and storing hydrogen. Using Homer simulation, three scenarios are investigated to propose an optimized model, namely Scenario 1 containing (PV-Wind-Battery) system, Scenario 2 with (Wind-Battery) technologies and Scenario 3 with (PV-Battery) components. The otimization process executed demonstrates very competitive levelized cost of energy (LCOE) and levelized cost of hydrogen (LCOH) especially for the third scenario solely based on PV power with LCOE in range $0.354-0.435/kWh and a LCOH varying within $13.5-16.5/kg, for all 20 cities. An average net present cost (NPC) value of $ 1,561,429 and $ 2,522,727 are predicted for the first and second architectures while least net present cost of $1,038,117 is estimated for the third combination solely based on solar power according to all sites considered. For instance, minimum values are obtained for Marseille city with LCOE=$ 0.354/kWh and a LCOH=$ 13.5 /kg in conformity with the minimum obtained value of NPC value of $886,464 with respect to the winner third scenario. In addition, more costly hydrogen production is expected for Grenoble city especially for scenario 1 and 2 where wind turbine technology is introduced. On another hand, thorough analysis of PV/wind hydrogen techno-economic operation is provided including improvements recommendations, scenarios comparison and environmental impact discussion.
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位于20个选定的法国城市的独立光伏/风能/电池动力加氢站的HOMER优化
目前的研究提出了一个自主加氢站(HRFS)的模型,安装在法国20个城市的不同地点,由可再生清洁能源提供动力。该站完全由光伏(PV)板、带电池存储的风力涡轮机提供动力,并包括一个电解槽和用于生产和储存氢气的氢罐。通过Homer仿真,研究了包含(PV-Wind-Battery)系统的场景1、包含(Wind-Battery)技术的场景2和包含(PV-Battery)组件的场景3,提出了优化模型。所执行的优化过程表明,在所有20个城市中,能源均一化成本(LCOE)和氢均一化成本(LCOH)非常具有竞争力,特别是在第三种完全基于光伏发电的方案中,LCOE范围为0.354-0.435美元/千瓦时,LCOH范围为13.5-16.5美元/千克。预计第一种和第二种架构的平均净当前成本(NPC)分别为1,561,429美元和2,522,727美元,而根据所有考虑的地点,仅基于太阳能的第三种组合的最低净当前成本估计为1,038,117美元。例如,马赛市获得的最小值为LCOE= 0.354美元/千瓦时,LCOH= 13.5美元/公斤,符合第三个获胜方案中NPC价值的最小获得值为886,464美元。此外,格勒诺布尔市的氢气生产成本预计会更高,特别是在引入风力涡轮机技术的情景1和情景2中。另一方面,对光伏/风能氢能技术经济运行进行了深入分析,包括改进建议、场景比较和环境影响讨论。
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