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Numerical simulation of the flow in a plane-channel containing a periodic array of cylindrical turbulence promoters

机译:包含圆柱湍流促进剂周期阵列的平面通道内流动的数值模拟

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This work is aimed at obtaining a better understanding of transport phenomena in membrane elements, where feed-flow spacers (employed to separate membrane sheets and create flow channels) tend to enhance mass transport characteristics, possibly mitigating fouling and concentration polarization phenomena, while augmenting pressure drop. A model flow geometry is considered consisting of a plane-channel, where a regular array of cylinders is inserted, acting as turbulence promoters. Direct numerical simulations using the Navier-Stokes equations are performed over a range of Reynolds numbers typical of such membrane modules. The results show that the flow becomes unstable at a critical Reynolds number of 60, and progressively tends to a chaotic state. Qualitative flow features, such as the development and separation of boundary layers, vortex formation, the presence of high-shear regions and recirculation zones, and the underlying mechanisms are examined. In addition, quantitative statistical characteristics such as time-averaged velocities, Reynolds stresses, wall-shear rates and pressure drop are obtained, which are directly related to mass transport enhancement.
机译:这项工作旨在更好地理解膜元件中的传输现象,其中进料流隔离物(用于分隔膜片并创建流道)往往会增强质量传输特性,可能减轻结垢和浓差极化现象,同时增加压力下降。模型流动的几何形状被认为是由一个平面通道组成,在平面通道中插入了规则的圆柱体,作为湍流促进器。使用Navier-Stokes方程的直接数值模拟是在此类膜模块的典型雷诺数范围内进行的。结果表明,在临界雷诺数为60时,流量变得不稳定,并逐渐趋于混乱。定性流动特征,如边界层的发育和分离,涡旋形成,高剪切区和回流区的存在以及潜在的机制。另外,获得了诸如时间平均速度,雷诺应力,壁剪切率和压降之类的定量统计特征,其与传质的增强直接相关。

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