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Axial interfacial area transport and flow structure development in vertical upward bubbly and slug flow

机译:垂直向上泡沫和块状流动的轴向界面传输和流动结构

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摘要

To improve the interfacial area transport equation model in the bubbly to slug transition flow, experiments are performed using the four-sensor conductivity probe for upward bubbly and slug flow in a 25.4 mm ID pipe. A total of 24 flow conditions are measured at 3 different superficial liquid velocities ranging from 0.5 m/s to 2.0 m/s and 8 different void fractions ranging from 0.1 to 0.6. The axial development of flow profiles is analyzed for bubbly flow, bubble-to-slug transition flow, and slug flow. In addition, the velocity effects on fully developed flow structures are also explained and the probe results are verified using the flow visualization. One-dimensional interfacial area transport due to bubble coalescence and disintegration is presented and its dependence on void fraction and velocity are discussed. These data provide one of the few quantitative results of the velocity effect on flow structure development at the same void fraction.
机译:为了改善气泡中的界面区域输送方程模型以使块过渡流程,使用四个传感器电导率探针在25.4mm ID管中使用四个传感器电导率探针进行。在3种不同的浅表液体速度范围为0.5m / s至2.0m / s的3个不同的液体速度和8个不同的空隙级分,范围为0.1至0.6。分析流动型材的轴向开发,用于起泡流动,气泡到夹出过渡流和块流。此外,还解释了对完全发育的流动结构的速度效应,并且使用流量可视化验证探针结果。讨论了由于气泡聚结和崩解引起的一维界面区域传输,并且讨论了其对空隙分数和速度的依赖性。这些数据提供了对相同空隙部分的流动结构显影的速度效应的少数定量结果之一。

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