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A new pressure drop model of gas-liquid cyclone with innovative operation mode

机译:创新运行方式的气液旋风分离器新型压降模型

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An innovative operation mode of cyclone, called 'cyclone splitter', was presented to extend the application scope of the conventional cyclones. Three cyclone splitters were tested for their performance on the pressure drop with pure and droplet-laden gases. The influencing mechanisms of the split ratio on the pressure drop of a cyclone splitter were studied by numerical simulation. It was found that the split ratio mainly affects the axial velocity distribution in both cyclone body and outlet tubes. Further studies on the effect of droplet loading on the pressure drop were conducted, with the droplet volume concentration of inlet gas ranging from 0.1 to 1.0%. The experimental results showed that the two-phase Euler numbers decrease with the increasing droplet loading. A new pressure drop model of gas-liquid cyclone was established by introducing a liquid-phase correction coefficient. The two-phase Euler numbers predicted by this model were compared with the measured values, and the mean deviation is less than 10%, which indicates that this pressure drop model is suitable for the cyclone splitters with pure or droplet-laden gases. Furthermore, this model can also be used for the conventional cyclones with the split ratio F=100%. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种新型的旋风分离器操作模式,称为“旋风分离器”,以扩展传统旋风分离器的应用范围。测试了三个旋风分离器在纯净气体和含液滴气体下的压降性能。通过数值模拟研究了分流比对旋风分离器压降的影响机理。发现分流比主要影响旋风分离器主体和出口管的轴向速度分布。进一步研究了液滴负载对压降的影响,入口气体的液滴体积浓度范围为0.1%至1.0%。实验结果表明,两相欧拉数随液滴载荷的增加而减小。通过引入液相校正系数,建立了新的气液旋流器压降模型。将该模型预测的两相欧拉数与测量值进行比较,平均偏差小于10%,这表明该压降模型适用于含纯净气体或含液滴气体的旋风分离器。此外,该模型也可用于分流比F = 100%的常规旋风分离器。 (C)2015 Elsevier B.V.保留所有权利。

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