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Flow and mass transfer in spacer-filled channels for reverse electrodialysis: a CFD parametrical study

机译:隔离物填充通道中的流动和传质,用于反向电渗析:CFD参数研究

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摘要

In reverse electrodialysis (RED) concentration polarization phenomena and pressure drop affect strongly the power output obtainable; therefore the channel geometry has a crucial impact on the system optimization. Both overlapped and woven spacers are commonly commercialised and adopted for RED experiments; the latter exhibit some potential advantages, such as better mixing and lower shadow effect, but they have been poorly investigated in the literature so far. In this work, computational fluid dynamics was used to predict fluid flow and mass transfer in spacer-filled channels for RED applications. A parametric analysis for different spacer geometries was carried out: woven (w) and overlapped (o) spacers with filaments at 90° were simulated, and Reynolds number, pitch to height ratio (l/h) and orientation with respect to the main flow (α=0° and α=45°) were made to vary. The filament arrangement was found to be a crucial feature; for any given pumping power, higher Sherwood numbers were provided by the w-arrangement. The influence of flow attack angle and filament spacing depends on Reynolds number and filament arrangement. Only the configuration w-α45 avoids the presence of poorly mixed zones near the wires. Among the cases investigated here, the configuration that provided the best mixing conditions was w, l/h=2, α=45°.
机译:在反向电渗析(RED)中,极化现象和压降会严重影响可获得的功率输出。因此,通道的几何形状对系统优化具有至关重要的影响。重叠的和编织的垫片都已被商业化并用于RED实验。后者表现出一些潜在的优势,例如更好的混合和更低的阴影效果,但迄今为止,在文献中对此进行了很少的研究。在这项工作中,使用计算流体动力学来预测用于RED应用的填充垫片的通道中的流体流动和传质。对不同的垫片几何形状进行了参数分析:模拟了编织的(w)和重叠的(o)垫片,其长丝在90°,并且雷诺数,节高比(l / h)和相对于主流的方向使(α= 0°和α= 45°)变化。发现长丝排列是关键的特征。对于任何给定的泵浦功率,w布置都提供了更高的舍伍德数。流动攻角和细丝间距的影响取决于雷诺数和细丝排列。只有配置w-α45可以避免在导线附近出现混合不良的区域。在这里研究的情况中,提供最佳混合条件的配置为w,l / h = 2,α= 45°。

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