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首页> 外文期刊>Journal of Power and Energy Engineering >Modeling of Hydrogen Production in an Alkaline Electrolyser System Connected with a Solar Photovoltaic Panel or a Wind Turbine: Case Study; Douala-Cameroon
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Modeling of Hydrogen Production in an Alkaline Electrolyser System Connected with a Solar Photovoltaic Panel or a Wind Turbine: Case Study; Douala-Cameroon

机译:与太阳能光伏板或风力涡轮机连接的碱性电解槽系统中氢气产生的建模:案例研究; 杜阿拉 - 喀麦隆

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This article is in the field of research into the storage of renewable energy production. One of the main obstacles to the rapid development of renewable energies is the storage of the energy produced at low cost and with good efficiency. The production of hydrogen from renewable energies is a promising solution. The present work evaluates the potential of hydrogen production by electrolysis from solar photovoltaic and wind renewable energies in the city of Douala in Cameroon. The methodological approach used is based on the semi-empirical modelling approach of an alkaline electrolyser associated with the solar panel or the wind turbine. The simulation results obtained on the MATLAB/Simulink platform show that the average hydrogen production potential is estimated at 0.55 Nm~(3)/h for a PV panel supply, which corresponds to average energy efficiency of 70%, and at 0.675 Nm~(3)/h for a wind turbine supply, which corresponds to average energy efficiency of 84%. These results show the need to promote this technology, whose efficiency can be improved depending on the choice of site.
机译:本文在研究可再生能源生产的研究领域。可再生能源快速发展的主要障碍之一是以低成本生产的能量储存,效率良好。来自可再生能量的氢的生产是有希望的解决方案。目前的作品评估了喀麦隆市杜阿拉市的太阳能光伏和风可再生能源电解的氢气产量的潜力。所用方法方法基于与太阳能电池板或风力涡轮机相关的碱性电容器的半经验模型方法。在Matlab / Simulink平台上获得的模拟结果表明,对于光伏面板供应,估计平均氢气生产电位为0.55nm〜(3)/ h,其对应于70%的平均能量效率,0.675nm〜( 3)/ H对于风力涡轮机供应,其对应于平均能量效率为84%。这些结果表明需要促进这项技术,这取决于现场的选择可以提高其效率。

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