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Design and operation of gas–liquid slug flow in miniaturized channels for rapid mass transfer

机译:小型通道中气液塞流的设计和运行,以实现快速传质

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摘要

The influences of operating parameters such as channel size, flow rate, and void fraction on the mass transfer rate in the gas–liquid slug flow are investigated to establish a design method to determine the parameters for rapid mass transfer. From the experimental results, the turnover index, including the slug linear velocity, its length, and the channel size that represents the turnover frequency of the internal circulation flow, is proposed. For PTFE tube in which no liquid film exists in slug flow, a master curve is derived from the relationship between the mass transfer coefficient and the turnover index. For each channel material, the Sherwood number is also roughly correlated with the Peclet number. These correlations make it possible to arbitrarily determine a set of operating parameters to achieve the desired mass transfer rate. However, the turnover index and the Peclet number include the slug length, which cannot be controlled directly. The relationship between the slug length and the operating parameters is also investigated. The slug volume mainly depends on the inner diameter (i.d.) of a union tee. At a fixed union tee i.d., the slug length is controlled through the exit i.d. of the channel connected to the union tee and the void fraction. Thus, the final slug length depends on the union tee and exit channel inner diameters. At low flow rates, the gas and liquid collision angle is significant in determining the slug length.
机译:研究了通道尺寸,流速和空隙率等操作参数对气液弹团流中传质速率的影响,以建立一种确定快速传质参数的设计方法。从实验结果出发,提出了包括段塞线速度,段长和代表内部循环流转换频率的通道尺寸在内的转换指标。对于在团状流中不存在液膜的PTFE管,根据传质系数与周转指数之间的关系导出主曲线。对于每种通道材料,Sherwood数也与Peclet数大致相关。这些相关性使得可以任意确定一组操作参数以获得期望的质量传递速率。但是,周转率指数和Peclet数包含弹头长度,无法直接控制。还研究了段塞长度与操作参数之间的关系。弹头的体积主要取决于三通的内径(i.d.)。在固定的三通三通i.d.处,段塞长度通过出口i.d控制。连接到三通的通道的直径和空隙率。因此,最终段塞的长度取决于三通和出口通道的内径。在低流速下,气体和液体的碰撞角度对于确定弹头长度很重要。

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