Techno-economic optimization of a photovoltaic-wind energy-based hydrogen production system: A case study of different cities of Saudi Arabia

I. Mansir, P. Okonkwo, Naeim Farouk
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Abstract

The study employed Hybrid Optimization of Multiple Electric Renewables software and two-hybrid energy systems configurations to ascertain the most effective approach for generating hydrogen and electrical power in the designated three cities of Dammam, Jeddah and Tabuk in Saudi Arabia. To reduce emissions of greenhouse gases, improve energy security and encourage sustainable development, this study was motivated by the need to address the urgent need to switch to renewable energy sources like solar and wind based on Saudi Arabian's Vision 2030 initiative. To achieve these objectives, this research investigates the techno-economic feasibility of producing hydrogen from renewable energy sources to promote energy independence and economic growth in the region of Saudi Arabia. The novelty of the study provides a regional view of the use of renewable energy sources for hydrogen production by concentrating on several Saudi Arabian cities. It is essential for successful energy planning and policy formation to have insights suited to unique regional settings as demonstrated in this study. According to the findings of the study, the electrical and hydrogen requirements of the selected cities in Saudi Arabia can be fulfilled using renewable energy sources, as sufficient wind speed and sunlight are available to produce renewable hydrogen. The outcomes of the study demonstrated that the electricity and hydrogen generated in the city of Dammam were found to be significantly higher than in the other two cities resulting in high hydrogen production at the city of Dammam compared to the cities of Tabuk and Jeddah. The hybrid energy system in Dammam was identified as the most practical option for fulfilling Saudi Arabia's electricity and hydrogen production requirements based on the analysis and optimization, with low net present cost, levelized cost and levelized cost of hydrogen values of $235235, 0.316 $/kWh and 4.16 $/kg, respectively. The outcome of the study suggests that incorporating a renewable energy system in Dammam may diminish the country's reliance on fossil fuels and decarbonize its transportation sector. The results of this study could be employed by members of the Saudi hydrogen industry to promote increased hydrogen production and make Saudi Arabia's energy infrastructure more resilient and sustainable.
光伏风能制氢系统的技术经济优化:沙特阿拉伯不同城市的案例研究
该研究采用了多种电力可再生能源混合优化软件和双混合能源系统配置,以确定在沙特阿拉伯达曼、吉达和塔布克这三个指定城市生产氢气和电力的最有效方法。为了减少温室气体排放、提高能源安全和鼓励可持续发展,这项研究的动机是根据沙特阿拉伯的 "2030 愿景 "倡议,满足转向太阳能和风能等可再生能源的迫切需要。为了实现这些目标,本研究调查了利用可再生能源生产氢气的技术经济可行性,以促进沙特阿拉伯地区的能源独立和经济增长。这项研究的新颖之处在于,通过集中研究沙特阿拉伯的几个城市,提供了利用可再生能源制氢的区域视角。如本研究所示,要成功制定能源规划和政策,就必须对独特的地区环境有深入的了解。根据研究结果,沙特阿拉伯选定城市的电力和氢气需求可以利用可再生能源来满足,因为有足够的风速和阳光来生产可再生氢气。研究结果表明,达曼市产生的电力和氢气明显高于其他两个城市,因此达曼市的氢气产量高于塔布克市和吉达市。根据分析和优化,达曼的混合能源系统被认为是满足沙特阿拉伯电力和氢气生产要求的最实用方案,其净现值成本、平准化成本和氢气平准化成本分别为 235235 美元、0.316 美元/千瓦时和 4.16 美元/千克。研究结果表明,在达曼纳入可再生能源系统可以减少该国对化石燃料的依赖,并使其交通部门去碳化。沙特氢能产业的成员可以利用本研究的结果来促进氢能生产的增加,并使沙特阿拉伯的能源基础设施更具弹性和可持续性。
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