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Techno-economic benefits of grid-scale energy storage in future energy systems

机译:网格级能量存储在未来能源系统中的技术经济效益

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The increasing penetration of renewable energy sources in the power sector represents an important challenge for energy systems due to their elevated intermittency. Energy storage constitutes a key component for its ability to add flexibility to the system allowing further integration of these renewable sources. Therefore, the aim of this study is to analyse the impact of grid-scale energy storage in a hydro dominated power system with increasing renewable generation shares. The Colombian energy system is used as a case study. The model used in this work is built using the EnergyPLAN tool and validated against actual data. Successively, the techno-economic effects of large-scale energy storage technologies are assessed on three different future scenarios for the year 2030. The results evidence that increasing levels of storage could allow significant reductions in both the curtailed energy and the total fuel consumption of the country. The best-case scenario shows an estimated 67% reduction in the emission intensity of the power sector by 2030 compared to the baseline scenario.
机译:由于其间歇性提高,可再生能源的可再生能源的普及率越来越多地代表了能源系统的重要挑战。能量存储构成一个关键组件,以便为系统增加灵活性,允许进一步整合这些可再生源。因此,本研究的目的是分析随着可再生于可再生的一代股份的水电主导电力系统中网格级能量储存的影响。哥伦比亚能源系统被用作案例研究。本工作中使用的模型是使用EnergyPlan工具构建的,并针对实际数据验证。连续地,大规模能源存储技术的技术经济影响是在2030年的三种不同未来情景中进行评估。结果证明储存水平的证据可以缩短缩减能量和总燃料消耗量的显着减少国家。与基线情景相比,最佳情况表明,通过2030,电力扇区的发射强度降低了67%。

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