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On the structure of turbulent bubbly gas-liquid flows

机译:在湍流泡气液流的结构上

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To gain understanding of the structure of turbulent bubbly gas (or vapor) - liquid flows, local measurements have been carried out in the bubbly regime of isothermal gas-liquid flow and boiling flow. The isothermal flow was created by injectingnitrogen gas into an upward flow of liquid Refrigerant- 113 through a vertical pipe. The boiling flow, of Refrigerant 113, was created in a vertical annular channel whose inner wall was heated. In both flows, the radial distributions of gas (or vapor)residence time fraction, bubble mean axial velocity, and bubble diameter were measured by a dual-sensor fiberoptic probe. In the liquid phase of the flows, the radial distributions of mean axial and radial velocities, axial and radial turbulentintensities, and axial Reynolds shear stress were measured by a two-component laser Doppler velocimeter (LDV). The radial distributions of bubble mean axial velocity and axial velocity fluctuation intensity were also measured by the LDV. Vapor and liquid temperature radial distributions in boiling flow were obtained by a fast-response microthermocouple.A multidimensional two-fluid model of turbulent bubbly gas (or vapor) - liquid flow is being developed at Electricite de France with contribution from our experimental and turbulence modeling work.
机译:为了了解湍流气泡气体(或蒸气) - 液体流动的结构,已经在等温气体流动和沸腾流动的气泡状态下进行局部测量。通过将润料气体注入到液体制冷剂-113的向上流动通过垂直管来产生等温流。制冷剂113的沸腾流动在垂直环形通道中产生,其内壁被加热。在两个流动中,通过双传感器纤维探针测量气体(或蒸气)停留时间分数,气泡平均轴向速度和气泡直径的径向分布。在流动的液相中,通过双组分激光多普勒速度计(LDV)测量平均轴向和径向速度,轴向和径向湍流和轴向雷诺剪切应力的径向分布。通过LDV还测量气泡平均轴向速度和轴向速度波动强度的径向分布。通过快速响应的微液耦合获得沸腾流动中的蒸汽和液体温度径向分布。通过我们的实验和湍流建模的贡献,在湍流气泡气(或蒸气) - 液体流动的多维双流体模型中获得了湍流冒泡气体(或蒸气)的多百合水模型工作。

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