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首页> 外文期刊>Frontiers of chemical science and engineering >Pressure drop analysis on the positive half-cell of a cerium redox flow battery using computational fluid dynamics: mathematical and modelling aspects of porous media
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Pressure drop analysis on the positive half-cell of a cerium redox flow battery using computational fluid dynamics: mathematical and modelling aspects of porous media

机译:使用计算流体动力学的铈氧化还原流电池正半电池的压降分析:多孔介质的数学和建模方面

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摘要

Description of electrolyte fluid dynamics in the electrode compartments by mathematical models can be a powerful tool in the development of redox flow batteries (RFBs) and other electrochemical reactors. In order to determine their predictive capability, turbulent Reynolds-averaged Navier-Stokes (RANS) and free flow plus porous media (Brinkman) models were applied to compute local fluid velocities taking place in a rectangular channel electrochemical flow cell used as the positive half-cell of a cerium-based RFB for laboratory studies. Two different platinized titanium electrodes were considered, a plate plus a turbulence promoter and an expanded metal mesh. Calculated pressure drop was validated against experimental data obtained with typical cerium electrolytes. It was found that the pressure drop values were better described by the RANS approach, whereas the validity of Brinkman equations was strongly dependent on porosity and permeability values of the porous media.
机译:通过数学模型的电极隔室中电解液流体动力学的描述可以是氧化还原流量电池(RFB)和其他电化学反应器的开发中的强大工具。为了确定它们的预测能力,湍流雷诺平均天Navier-Stokes(RANS)和自由流量加上多孔介质(Brinkman)模型被应用于计算在用作正半的矩形通道电化学流动单元中进行的局部流体速度。基于铈的RFB的细胞进行实验室研究。考虑两个不同的镀铂钛电极,板加上湍流启动子和膨胀金属网。验证了用典型的铈电解质获得的实验数据验证计算的压降。结果发现,RAN方法更好地描述了压降值,而Brinkman方程的有效性强烈依赖于多孔介质的孔隙率和渗透值。

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