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储能系统技术 储能系统 ★ 5.0

具有富氧燃烧的液态空气储能系统用于清洁能源供应:面向电力、供热、供冷及碳捕集的综合能源解决方案

Liquid air energy storage system with oxy-fuel combustion for clean energy supply: Comprehensive energy solutions for power, heating, cooling, and carbon capture

作者 Yungeon Kim · Taehyun Kim · Inkyu Le · Jinwoo Parka1
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 379 卷
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A liquid air energy storage system is proposed for effective energy solutions.
语言:

中文摘要

摘要 液态空气储能系统因其高能量密度和对地理条件的低依赖性,在储能领域受到了广泛关注。然而,尽管该技术在提升基于可再生能源系统的性能方面具有巨大潜力,其商业化进程仍受限于较低的往返效率。此外,尽管已有研究致力于解决这些局限性,但其对其他热力系统的依赖以及面临的环境挑战仍未得到有效解决。本研究提出了一种独立运行的液态空气储能系统,能够提供高效且可持续的综合能源解决方案,具备同时供应电力、供热和供冷的能力。此外,本文对该系统进行了全面的能效、㶲、经济性和环境性能评估。在额定工况下,该系统可输出118.19 MW的电力、38.64 MW的热能和81.07 MW的冷能,实现高达80.56%的往返效率。同时,系统在运行过程中产生氮气作为副产品,进一步提升了其经济效益。经济性分析表明,该系统可获得6.3651亿美元的净现值和25.67%的内部收益率。在环境方面,系统采用富氧燃烧技术,在不消耗额外能量的前提下,实现了天然气燃烧过程中99.997%的二氧化碳排放捕集。上述研究成果将为未来可持续、环保型能源供应系统的发展提供重要支撑。

English Abstract

Abstract Liquid air energy storage systems have garnered significant attention in the energy storage sector because of their high energy density and geographical independence. However, despite their substantial potential for improving renewable energy-based systems, their commercialization is hindered by their low round-trip efficiency. Furthermore, dependency on other thermal systems and environmental challenges remain unresolved, despite efforts to address these limitations. This study proposes an independent liquid air energy storage system that offers effective energy solutions, including the ability to provide power, heating, and cooling with improved efficiency and sustainability . Moreover, in-depth assessments of the energy, exergy, economic, and environmental performance were conducted. Under rated conditions, the system delivers 118.19 MW of power, 38.64 MW of heating, and 81.07 MW of cooling, achieving a round-trip efficiency of 80.56 %. Additionally, the system generates nitrogen as a by-product, providing further economic benefits. An economic analysis revealed that it yields a net present value of $636.51 million and an internal rate of return of 25.67 %. Environmentally, the system uses an oxy-fuel combustion method to capture 99.997 % of carbon dioxide emissions from natural gas combustion without consuming additional energy. These findings will contribute to the future development of sustainable and eco-friendly energy supply systems.
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SunView 深度解读

该液态空气储能系统的多能互补技术对阳光电源ST系列储能变流器和PowerTitan系统具有重要启示。其80.56%往返效率和冷热电三联供模式,可与我司储能PCS的能量管理策略深度融合,通过优化GFM控制算法实现多场景能源调度。系统的碳捕集技术为工业园区综合能源解决方案提供新思路,可结合iSolarCloud平台实现智能运维和经济性优化,拓展储能系统在零碳园区的应用场景。