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首页> 外文期刊>International Journal of Heat and Mass Transfer >Time-dependent mass-transfer behaviour under laminar and turbulent flow conditions in rotating electrodes: A CFD study with analytical and experimental validation
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Time-dependent mass-transfer behaviour under laminar and turbulent flow conditions in rotating electrodes: A CFD study with analytical and experimental validation

机译:旋转电极下层流和湍流条件下的时间依赖性传质行为:具有分析和实验验证的CFD研究

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Results of numerical calculations and their comparison with analytical expressions or experimental data under laminar and turbulent flow conditions are reported. It is predicted the transient and steady-state behaviour of mass-transfer coefficients and shear stresses in electrochemical reactors composed of rotating electrodes.Computational fluid dynamics (CFD) simulations were performed for both the rotating disc electrode (RDE) and the rotating cylinder electrode (RCE) considering the laminar or Reynolds-Averaged Navier-Stokes (RANS) equations. In this last case, it was assumed the Shear Stress Transport (SST) k-omega turbulence model sensitised by a correction term that accounts for streamline curvature and rotation. The hydrodynamics, coupled to the averaged diffusion-convection equation under transient conditions, was solved using the open source software OpenFOAM.A good agreement was attained between simulations and experimental or analytical results. In both rotating systems, a steady-state can be reached with an oscillatory behaviour that can be periodic in the case of laminar flow; depending on the Schmidt number, the interelectrode gap and the hydrodynamics. Also, the uniformity of the mass-transfer coefficient is lost under some circumstances. Finally, the full numerical code and a tutorial on how to use it, in order to perform simulations for the RDE or RCE, are supplied. (C) 2019 Elsevier Ltd. All rights reserved.
机译:报道了数值计算的结果及其与层层和湍流条件下的分析表达或实验数据的比较。预测由旋转电极组成的电化学反应器中的传质系数和剪切应力的瞬态和稳态行为进行了旋转盘电极(RDE)和旋转圆筒电极(考虑到层流或雷诺平均的Navier-Stokes(RAN)方程。在最后一个情况下,假设由校正项致敏的剪切应力传输(SST)K-Omega湍流模型,该校正术语用于简化曲率和旋转。使用开源软件OpenFoam解决了瞬态条件下的平均扩散 - 对流方程的流体动力学,求解了oppfoam.a在模拟和实验或分析结果之间实现了良好的协议。在两个旋转系统中,可以通过在层流的情况下具有周期性的振荡行为来达到稳态;取决于施密特数,电极间隙和流体动力学。而且,在某些情况下,传质系数的均匀性损失。最后,提供了对如何使用它的完整数字代码和关于执行RDE或RCE的模拟的教程。 (c)2019 Elsevier Ltd.保留所有权利。

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