Modeling of an all-vanadium redox flow battery and optimization of flow rates

Xiong Binyu, Zhao Jiyun, Li Jinbin
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引用次数: 24

Abstract

Vanadium redox flow batteries (VRBs) are competitive for large energy storage systems due to low manufacture and maintenance costs and high design flexibility. Electrolyte flow rates have significant influence on the performance and efficiencies of the batteries. High electrolyte flow rates improve energy efficiency while degrade the battery efficiency due to high pump power losses. Thus, flow rates are necessary to be optimized for battery efficiency improvement. In this paper, an electrochemical model is firstly proposed to describe the charge-discharge characteristics based on the experimental data. Then, an empirical method is introduced to analyze the energy consumption of pumps under various flow rates. The optimal flow rates are obtained by applying new criteria. The results show that VRBs obtain peak battery efficiencies at the optimal flow rates around 90 cm3s-1 with respect to the proposed battery configuration. The optimal flow rates are provided as a reference for battery operations and control.
全钒氧化还原液流电池的建模及流量优化
钒氧化还原液流电池(vrb)由于制造和维护成本低,设计灵活性高,在大型储能系统中具有竞争力。电解液流速对电池的性能和效率有重要影响。高电解质流速提高了能量效率,但由于泵功率损失大,降低了电池效率。因此,流量是优化电池效率的必要条件。本文基于实验数据,首次提出了描述电池充放电特性的电化学模型。然后,引入了一种经验方法,分析了不同流量下泵的能耗。应用新准则得到了最优流量。结果表明,相对于所提出的电池配置,vrb在最佳流量约为90 cm3 -1时获得峰值电池效率。为蓄电池运行和控制提供了最佳流量参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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