Effect of electrode properties on performance of miniaturized vanadium redox flow battery

N. Pinjari, B. Kumar, A. Bhargav, P. Ruch
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引用次数: 2

Abstract

Redox flow batteries have seen interest in electronic applications because of their potential to simultaneously deliver electric power and remove heat. For these applications, the flow battery has to be constructed on a side of a computer chip, with components such as flow channels, manifolds, supply tubes, electrodes, membranes and current collectors. Since experimentation with micro-scale components is especially expensive and time-consuming, there is a need to develop computational tools to understand trade-offs in the design and operation of these flow batteries. Computational fluid dynamics study of redox flow batteries is carried out using commercial software package COMSOL Multiphysics. This paper analyses the effect of flow rate and electrode thickness on current and voltage distribution in the flow battery. Tradeoff between flow rate and pressure drop also has been analyzed. We have quantified the effects of flow rate on pressure drop and thereby the parasitic pumping power and the effect of electrode thickness on the ohmic overpotential and thereby the performance of the cell.
电极性能对小型化钒氧化还原液流电池性能的影响
氧化还原液流电池在电子领域的应用引起了人们的兴趣,因为它们具有同时提供电力和散热的潜力。对于这些应用,液流电池必须在计算机芯片的一侧构建,包括流道、歧管、供电管、电极、膜和集流器等组件。由于微型组件的实验特别昂贵和耗时,因此需要开发计算工具来了解这些液流电池的设计和操作中的权衡。利用商用软件COMSOL Multiphysics对氧化还原液流电池进行了计算流体动力学研究。本文分析了流量和电极厚度对液流电池电流和电压分布的影响。分析了流量与压降之间的权衡关系。我们量化了流速对压降的影响,从而量化了寄生泵送功率和电极厚度对欧姆过电位的影响,从而量化了电池的性能。
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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