在氢-电耦合能源网络的不同供应配置电解的多目标优化-英国的观点

IF 7.1 2区 工程技术 Q1 ENERGY & FUELS
Hilal Ozdemir , Ioana Pisica
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引用次数: 0

摘要

氢在运输、重工业等行业的适应性,以及它通过灵活储存对间歇性可再生能源发电的支持,引发了人们对电解制氢的兴趣。虽然大规模电解槽集成通过帮助约束管理和通过存储减少可再生弃电来增强网络稳定性,但它也对电网提出了相当大的需求。这使得了解在配电网络(DNs)上部署电解槽的作用变得越来越重要。虽然现有的氢集成DNs研究通常针对特定的运营成本或孤立的限制,但它们通常缺乏考虑更广泛的经济、运营和环境影响的全面观点。本研究在这些维度上进行了广泛的分析,探索了不同的氢气供应配置,包括氢气管道和储存单元的可用性,在一个真正的英国DN中提供了一个实用的视角。该研究引入了一个冲突多目标函数,在有效管理运营成本的同时,将负载因子(LF)提高了85.516%,将功率损耗降低了22.947%。研究结果强调,配备高效管理算法的电解槽可以显著提高DNs的运营。此外,本文通过详细介绍最近英国的电解项目,为该领域做出了贡献,为氢-电耦合多能网络的未来提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective optimisation of electrolysis across diverse supply configurations in hydrogen–electricity coupled energy networks – A UK perspective
The adaptability of hydrogen across sectors such as transportation, heavy industry, and its support for intermittent renewable generation through flexible storage has sparked growing interest in electrolysis-based hydrogen production. While large-scale electrolyser integration enhances network stability by aiding constraint management and reducing renewable curtailment through storage, it also places considerable demand on electricity networks. This makes understanding the role of electrolyser deployment on distribution networks (DNs) increasingly crucial. While existing studies on hydrogen-integrated DNs often target specific operational costs or isolated constraints, they typically lack a comprehensive view that considers broader economic, operational, and environmental impacts. This study offers an extensive analysis across these dimensions, exploring diverse hydrogen supply configurations, including hydrogen pipeline and storage unit availability, within a real UK DN to provide a practical perspective. This study introduces a conflicting multi-objective function that improves load factor (LF) by 85.516% and reduces power loss by 22.947%, all while managing operational costs effectively. Findings underline that deploying electrolysers with efficient management algorithms can significantly enhance the operations of DNs. Additionally, this paper contributes to the field by detailing recent UK-based electrolysis projects, providing insights into the future of hydrogen–electricity coupled multi-energy networks.
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来源期刊
Sustainable Energy Technologies and Assessments
Sustainable Energy Technologies and Assessments Energy-Renewable Energy, Sustainability and the Environment
CiteScore
12.70
自引率
12.50%
发文量
1091
期刊介绍: Encouraging a transition to a sustainable energy future is imperative for our world. Technologies that enable this shift in various sectors like transportation, heating, and power systems are of utmost importance. Sustainable Energy Technologies and Assessments welcomes papers focusing on a range of aspects and levels of technological advancements in energy generation and utilization. The aim is to reduce the negative environmental impact associated with energy production and consumption, spanning from laboratory experiments to real-world applications in the commercial sector.
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