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Energy security and energy storage technologies

机译:能源安全和能量存储技术

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As the transition to a 100% renewable energy (RE) system is meant to enhance sustainability, energy security should be taken into consideration. Energy security is an important situation in which the system can function optimally and sustainably, free from risks and threat. Part of the energy security consideration is the discussion about different energy system elements. And one of the most important elements of the RE system is storage. The aim of this work is to analyse energy storage technologies from an energy security perspective. Different storage technologies are studied. The portfolio of the technologies include: Pump Hydro Storage (PHS), Thermal Energy Storage (TES), batteries, Adiabatic Compressed Air Energy Storage (A-CAES), and bulk storage for gas and liquid (biogas, H_2, CH_4, CO_2, O_2, liquefied gases, biodiesel, synthetic fuels, etc.) relevant for the energy transition. The results show clearly that not all storage technologies obtain the same level of energy security; TES is considered to have the highest level of security, and then the other storage technologies come in order from the highest to the lowest: batteries, gas/liquid storage, PHS, and the least secure energy storage technology is A-CAES. The conclusion is that all storage technologies show a positive relationship with energy security and all increase energy security, albeit at different levels. Therefore, it is recommended that manufacturers, energy system planners and policy makers adopt and improve storage technologies based on the need and the security of the system.
机译:随着到100%可再生能源(RE)系统的过渡,旨在提高可持续性,应考虑能源安全性。能源安全性是一个重要的情况,系统可以最佳和可持续地运作,免受风险和威胁。部分能源安全考虑是关于不同能源系统元素的讨论。并且RE系统中最重要的元素之一是存储。这项工作的目的是从能源安全视角分析能量存储技术。研究了不同的存储技术。技术组合包括:泵水力储存(PHS),热能存储(TES),电池,绝热压缩空气储存(A-CAES),以及气体和液体的散装储存(沼气,H_2,CH_4,CO_2, O_2,液化气质,生物柴油,合成燃料等,与能源转换相关。结果表明,并非所有存储技术都获得相同的能源安全程度; TES被认为具有最高水平的安全性,然后其他存储技术从最高到最低点到最低:电池,燃气/液体储存,pH,以及最不安全的能量存储技术是A-CAES。结论是,所有存储技术都与能源安全和所有增加的能源安全性显示出积极的关系,尽管不同于不同的水平。因此,建议制造商,能源系统规划者和决策者根据系统的需求和安全性采用和改善储存技术。

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