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Hydrogen generation from small-scale wind-powered electrolysis system in different power matching modes

机译:不同功率匹配模式下的小型风能电解制氢

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This study presents a techno-economic evaluation on hydrogen generation from a small- scale wind-powered electrolysis system in different power matching modes. For the analysis, wind speed data, which measured as hourly time series in Kirklareli, Turkey, were used to predict the electrical energy and hydrogen produced by the wind-hydrogen energy system and their variation according to the height of the wind turbine. The system considered in this study is primarily consisted of a 6 kW wind-energy conversion system and a 2 kW PEM electrolyzer. The calculation of energy production was made by means of the levelized cost method by considering two different systems that are the grid-inde-pendent system and the grid-integrated system. Annual production of electrical energy and hydrogen was calculated as 15,148.26 kWh/year and 102.37 kg/year, respectively. The highest hydrogen production is obtained in January. The analyses showed that both electrical energy and hydrogen production depend strongly on the hub height of wind turbine in addition to the economic indicators. In the grid-integrated system, the calcu-lated levelized cost of hydrogen changes in the range of 0.3485-4.4849 US$/kg for 36 m hub height related to the specific turbine cost. The grid-integrated system can be considered as profitable when the excess electrical energy delivered by system sold to the grid.
机译:这项研究提出了在不同功率匹配模式下从小型风力发电系统产生氢气的技术经济评价。为了进行分析,使用风速数据(按土耳其Kirklareli中的小时时间序列测量)来预测风-氢能系统产生的电能和氢以及它们根据风力涡轮机高度的变化。本研究中考虑的系统主要由6 kW的风能转换系统和2 kW的PEM电解槽组成。能源生产的计算是通过考虑两个不同的系统,即独立电网系统和集成电网系统,通过平均成本法进行的。计算出的年电能和氢气产量分别为15148.26 kWh /年和102.37 kg /年。一月份获得了最高的氢气产量。分析表明,除了经济指标外,电能和氢气的产生都强烈取决于风力发电机的轮毂高度。在与电网集成的系统中,与特定的涡轮机成本相关,对于36 m的轮毂高度,计算得出的氢气平均化成本在0.3485-4.4849美元/ kg范围内变化。当系统交付的多余电能出售给电网时,可以认为该电网集成系统是有利可图的。

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