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HYBRID MULTIPHASE CFD SIMULATION FOR LIQUID-LIQUID INTERFACIAL AREA PREDICTION IN ANNULAR CENTRIFUGAL CONTACTORS

机译:环形离心接触器中液液界面预测的杂交多相CFD仿真

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A hybrid multiphase CFD solver which combines the Eulerian multi-fluid method with VOF sharp interface capturing has been developed for application to annular centrifugal contactors. This solver has been extended to enable prediction of mean droplet size and liquid-liquid interfacial area through a single moment population balance method. Simulations of liquid-liquid mixing in a simplified geometry and a model annular centrifugal contactor are reported with droplet breakup/coalescence models being calibrated versus available experimental data. Quantitative comparison is made for two different housing vane geometries and it is found that the predicted droplet size is significantly smaller for vane geometries which result in higher annular liquid holdup.
机译:已经开发了一种混合多相CFD求解器,其将eulerian多流体方法与vof尖锐的界面捕获开发,以应用于环形离心接触器。该求解器已经扩展,以通过单次群体平衡方法实现平均液滴尺寸和液体界面区域的预测。报告了简化几何形状和模型环形离心接触器中的液液混合模拟,液滴分解/聚结模型与可用的实验数据校准。对于两个不同的壳体叶片几何形状进行定量比较,发现预测的液滴尺寸对于导致更高的环形液体堆叠的叶片几何形状明显较小。

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