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更正:一种新型等容-等压放电压缩CO2储能系统的动态特性研究

Corrigendum to “Investigation on dynamic characteristics of a novel isochoric-isobaric discharging compressed CO2 energy storage system”

作者 Zhen Hea · Xiaoxiao Xua · Yunying Haoa · Yongfang Huang · Shijie Zhang · Chuang Wua
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 343 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 勘误文章 修正 更正 已发表文章 摘要
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中文摘要

生物甲烷在智能能源网络中展现出双重调节优势。它通过管道压力平衡增强了供气灵活性,同时作为冷能载体用于电力调峰。然而,当前关于生物甲烷储能与负荷转移的研究仍处于探索阶段。本文提出了一种新型液化生物甲烷-空气联合储能(LBAES)系统,以克服液化空气储能系统输出系数低以及液化生物甲烷储能系统运行不灵活的问题。为评估所提系统的可行性,开展了综合能量、㶲和经济性评价的热经济分析。通过敏感性分析和多目标优化确定了最优运行参数。结果表明,在多目标优化后,系统最大往返效率可达88.04%,此时净现值为539,351.81美元,系统的㶲效率为56.30%。换热器(HE1、HE2、HE6和HE8)占总㶲损失的64.70%。所提出的系统提高了电力系统调峰的灵活性,有效实现了沼气工程中燃气与电力的双调峰功能。

English Abstract

Bio-methane demonstrates dual regulatory advantages in smart energy networks. It enhances gas supply flexibility through pipeline pressure balancing while serving as a cold energy carrier for power peaking. However, the current research on bio-methane energy storage and peak shifting remains in the exploratory stage. A novel liquefied biomethane-air combined energy storage (LBAES) system is proposed to overcome the low output coefficient of liquefied air energy storage system and operational inflexibility of liquefied biomethane energy storage system. To evaluate the feasibility of the proposed system, a thermoeconomic analysis considering energy, exergy, and economic evaluations was carried out. Sensitivity analysis and multi-objective optimization were performed to identify optimal operating parameters. Results indicate that the maximum round-trip efficiency achieves 88.04 % after multi-objective optimization, at which point the net present value is $539,351.81. The exergy efficiency of system is 56.30 %. Heat exchangers (HE1, HE2, HE6, and HE8) account for 64.70 % of the total exergy loss. The proposed system improves the flexibility of the power system for peaking, which effectively enables the realization of the dual-peaking function of gas and electricity in the biogas project.
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SunView 深度解读

该液化生物甲烷-空气复合储能系统(LBAES)的88.04%往返效率和气电双调峰特性,为阳光电源ST系列储能变流器和PowerTitan系统提供创新应用场景。系统中热交换器占64.70%能量损失的分析,可指导我们优化储能系统热管理策略。其气电协同调峰模式与阳光电源iSolarCloud平台的多能互补管理功能高度契合,可拓展至生物质能源项目的智慧能源解决方案,提升电网灵活性调节能力和综合能效管理水平。