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Theoretical Analysis of the Velocity Profiles in a Diacell? Cell Applying Computational Fluid Dynamics

机译:锯膜中速度谱的理论分析?电池应用计算流体动力学

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The DiaCell? electrochemical reactor has been used in several processes such as disinfection without chorine addition, advanced oxidation processes and residual water treatment. The reactor design allows a modification of the configuration from 1 to 4 compartments, changing the effective reactor volume with separators of different sizes that are internal and parallel feed. A computational fluid dynamics (CFD) study of a DiaCell? reactor is needed to describe the detailed flow field and the velocity profiles at each step of the compartments. The CFD analysis is an important tool to scale up the process in a swift and efficient way. The theoretical analysis presented in this paper shows changes in the velocity profiles and flow distribution as a function of the width of the selected separators and the residence time of the cell for four different geometry configurations. The reactor configuration with two separators of 0.3 cm present the most even flow distribution. Furthermore, the analysis shows that it is possible to evaluate for each of the four different geometries where the flow is even and the section of the flow close to the electrode that it is not uniform.
机译:锯膜?电化学反应器已用于几种方法,例如无浓缩的消毒,未加入,先进的氧化过程和残留水处理。反应器设计允许从1到4个隔间修改配置,改变有效的反应堆体积,其中不同尺寸的分离器是内部和平行的饲料。对锯膜的计算流体动力学(CFD)研究?需要反应器来描述隔室的每个步骤的详细流场和速度分布。 CFD分析是以迅速和有效的方式扩展该过程的重要工具。本文中提出的理论分析表明,随着所选分离器的宽度和四种不同几何构造的电池的停留时间的函数,速度分布和流量分布的变化。具有两种分离器的反应器构型为0.3cm,最均匀的流量分布。此外,分析表明,它是能够评价为四个不同的几何形状的,其中的流动是均匀的流动靠近电极的部分,它是不均匀的。

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