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Dataset on performance of large-scale vanadium redox flow batteries with serpentine flow fields

机译:DataSet对大型钒氧化还原流电池的性能蛇形流动场

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摘要

The dataset presented in this article are related to research articles “Effect of electrolyte convection velocity in the electrode on the performance of vanadium redox flow battery cells with serpentine flow fields” [1] and “Effect of channel dimensions of serpentine flow fields on the performance of a vanadium redox flow battery” [2]. The combined dataset on the pressure drop and electrochemical behavior of the vanadium flow battery cells with active areas of 400 cm2, 900 cm2 and 1500 cm2 were obtained using battery life cycler for the circulation of vanadium electrolyte of concentration 1.61 M VOSO4 dissolved in 5 M H2SO4. The cells were designed with various combinations of flow-channel dimensions of serpentine flow field and the electrochemical performance has been obtained at various flow rates and current densities. In addition to the experimental data, computational fluid dynamics simulations have been performed to investigate the electrolyte distribution across the cell. The shared data enables the reader of research articles to delve into the life cycle behavior at various operating conditions and emphasize the importance of flow-channel dimensions, flow rate and uniform distribution of electrolyte in combating the concentration over-potential.
机译:本文中提出的数据集与研究制品“电解液对流速度在钒氧化还原流动电池细胞与蛇形流场”[1]的性能上的影响有关的相关研究文章与蛇形流动场的通道尺寸对性能的影响。钒氧化还原电池[2]。使用电池寿命循环仪获得400cm 2,900cm 2和1500cm2的钒流电池电池的压降和电化学行为的组合数据集获得浓度为1.61m voso4的钒电解质的钒电解质循环。溶解在5mH2SO4中。设计细胞,具有蛇形流场的流动通道尺寸的各种组合,并且在各种流速和电流密度下获得了电化学性能。除了实验数据之外,已经进行了计算流体动力学模拟以研究细胞上的电解质分布。共享数据使得研究文章的读者能够在各种操作条件下深入化生命周期行为,并强调流动通道尺寸,流速和电解质均匀分布在对抗浓度过势时的重要性。

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