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NUMERICAL SIMULATION OF THE AIR-WATER TWO-PHASE FLOW ACROSS A 90-DEGREE VERTICAL-UPWARD ELBOW

机译:90度垂直向上弯头的空气两相流的数值模拟

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The present study investigates the air-water two-phase flow across a 90-degree vertical-upward elbow with the computational fluid dynamics (CFD) simulation. The Eulerian-Eulerian two-fluid model and the Multi Size Group (MUSIG) model are used to predict the development of the detailed interfacial structures between the two phases. The axial development of the void fraction and the interfacial area concentration are investigated and benchmarked with the experimental data measured using the four-sensor conductivity probe. It is concluded that CFD simulation can predict the characteristics distributions of void fraction and interfacial area concentration and their development downstream of the elbow. The double-peaked void fraction distribution is found to be caused by the secondary flow induced by the elbow. The liquid phase on the outer curvature moves to the inner curvature and forms a double counter rotating vortex, entraining the bubbles to form a double-peaked distribution. The elbow effects become dissipated between 33 and 63 hydraulic diameters. The simulation results of liquid-phase and gas-phase parameters can be used to develop the theoretical two-phase flow models for the elbow region.
机译:本研究通过计算流体动力学(CFD)模拟,研究了通过90度垂直向上弯头的空气水两相流。欧拉 - 欧拉二种流体模型和多尺寸组(Musig)模型用于预测两相之间的详细界面结构的发展。研究了空隙率和界面区域浓度的轴向开发,并利用使用四传感器电导率探针测量的实验数据进行基准。得出结论,CFD模拟可以预测空隙分数和界面区域浓度的特性分布及其在肘部下游的发展。发现双峰的空隙分数分布是由肘部引起的二次流动引起的。外曲率上的液相移动到内曲率并形成双重反旋转涡流,夹带气泡以形成双峰分布。肘部效果在33到63个液压直径之间消散。液相和气相参数的仿真结果可用于开发弯头区域的理论两相流模型。

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