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Study on architecture design of electroactive sites on Vanadium Redox Flow Battery (V-RFB)

机译:钒氧化还原液流电池(V-RFB)电活性位的体系结构设计研究

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摘要

Numerous researches have been conducted to look for better design of cell architecture of redox flow battery. This effort is to improve the performance of the battery with respect to further improves of mass transport and flow distribution of electroactive electrolytes within the cell. This paper evaluates pressure drop and flow distribution of the electroactive electrolyte in three different electrode configurations of vanadium redox flow battery (V-RFB) cell, namely square-, rhombus- and circular-cell designs. The fluid flow of the above-mentioned three electrode design configurations are evaluated under three different cases i.e. no flow (plain) field, parallel flow field and serpentine flow field using numerically designed three-dimensional model in Computational Fluid Dynamics (CFD) software. The cell exhibits different characteristics under different cases, which the circular cell design shows promising results for test-rig development with low pressure drop and better flow distribution of electroactive electrolytes within the cell. Suggestion for further work is highlighted.
机译:已经进行了许多研究以寻找氧化还原液流电池的电池结构的更好的设计。相对于进一步改善电池内电活性电解质的质量传输和流量分布,该努力是为了改善电池的性能。本文评估了钒氧化还原液流电池(V-RFB)电池的三种不同电极配置(即方形,菱形和圆形电池设计)中电活性电解质的压降和流量分布。在计算流体动力学(CFD)软件中使用数字设计的三维模型,在三种不同情况下(即无流场,平行流场和蛇形流场)对上述三种电极设计配置的流体流进行了评估。电池在不同情况下表现出不同的特性,圆形电池设计显示了在低压降和更好的电活性电解质在电池内流动分布的试验台开发中很有希望的结果。强调了进一步工作的建议。

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