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AXIAL DEVELOPMENT OF VERTICAL UPWARD BUBBLY FLOW IN A MINIPIPE

机译:微型方法中垂直向上气泡流动的轴向开发

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Accurate prediction of the interfacial area concentration is essential to successful development of the interfacial transfer terms in the two-fluid model. Mechanistic modeling of the interfacial area concentration entirely relies on accurate local flow measurements over extensive flow conditions and channel geometries. From this point of view, accurate measurements of flow parameters such as void fraction, interfacial area concentration, gas velocity, bubble Sauter mean diameter, and bubble number density were performed by the image processing method at five axial locations in vertical upward bubbly flows using a 1.02 mm-diameter pipe. The frictional pressure loss was also measured by a differential pressure cell. In the experiment, the superficial liquid velocity and the void fraction ranged from 1.02 m/s to 4.89 m/s and from 0.980% to 24.6%, respectively. The obtained data give near complete information on the time-averaged local hydrodynamic parameters of two-phase flow. These data can be used for the development of reliable constitutive relations which reflect the true transfer mechanisms in two-phase flow. As the first step to understand the flow characteristics in mini-channels, the applicability of the existing drift-flux model, interfacial area correlation, and frictional pressure correlation was examined by the data obtained in the mini-channel.
机译:精确预测界面区域浓度对于成功地发展双流体模型中的界面转移术语至关重要。界面面积浓度的机械建模完全依赖于广泛的流量条件和通道几何形状上精确的局部流量测量。从这个角度来看,通过使用a的五个轴向位置的图像处理方法,通过图像处理方法进行诸如空隙分数,界面面积浓度,气体速度,气泡沙油平均直径,气泡落平均直径和气泡数密度的精确测量。 1.02毫米的管道。摩擦压力损失也通过差压细胞测量。在实验中,浅表液体速度和空隙率分别为1.02m / s至4.89 m / s,分别为0.980%至24.6%。所获得的数据提供了关于两相流的时间平均局部流体动力学参数的完整信息。这些数据可用于开发可靠的本构关系,其反映了两相流中的真正传递机制。作为了解迷你通道中的流动特性的第一步,通过在迷你通道中获得的数据检查现有漂移 - 助熔剂模型,界面相关性和摩擦压力相关的适用性。

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