The benefits of long-duration energy storage for New England’s energy system decarbonization goals

Sergio Freeman, Ertan Agar
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Abstract

Utilizing a macro-scale energy model alongside 44 years of New England’s hourly weather data from MERRA-2, this study investigates the benefits of various combinations of renewable energy technologies, particularly wind and solar, and their integration with long-duration energy storage (LDES) systems. The potential of these renewable energy sources to enhance both the reliability and affordability of New England’s power system is evaluated. The findings demonstrate that incorporating LDES into the technology mix leads to a remarkable 55% reduction in overall system costs compared to relying solely on short-duration energy storage (SDES), such as lithium-ion batteries. Additionally, the cost reductions of LDES lead to approximately a 35% increase in the utilization of solar generation. The results suggest that total system costs for LDES are more responsive to relative decreases in power-capacity costs than decreases in energy-capacity costs. Furthermore, the analysis indicates that a combination of different LDES storage technologies can offer the most cost-effective solution for wind-solar power systems. Overall, by examining the interplay between different storage technologies and their impact on system costs, this research contributes significantly to the discourse on sustainable energy solutions.

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长期储能对新英格兰能源系统去碳化目标的益处
本研究利用一个宏观尺度的能源模型和来自 MERRA-2 的 44 年新英格兰每小时天气数据,调查了各种可再生能源技术组合(尤其是风能和太阳能)及其与长时间储能(LDES)系统集成的益处。研究评估了这些可再生能源在提高新英格兰电力系统的可靠性和经济性方面的潜力。研究结果表明,与单纯依靠锂离子电池等短时储能(SDES)相比,将 LDES 纳入技术组合可使系统总成本显著降低 55%。此外,LDES 成本的降低使太阳能发电的利用率提高了约 35%。分析结果表明,LDES 的系统总成本对电力容量成本相对下降的反应比对能源容量成本下降的反应更灵敏。此外,分析表明,不同 LDES 存储技术的组合可为风能-太阳能发电系统提供最具成本效益的解决方案。总之,通过研究不同储能技术之间的相互作用及其对系统成本的影响,本研究为可持续能源解决方案的讨论做出了重要贡献。
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