首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >VELOCITY FIELD IN ISOTHERMAL TURBULENT BUBBLY GAS-LIQUID FLOW THROUGH A PIPE
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VELOCITY FIELD IN ISOTHERMAL TURBULENT BUBBLY GAS-LIQUID FLOW THROUGH A PIPE

机译:管道中等温湍流气泡气液流的速度场

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Velocity field was measured by laser Doppler velocimetry in isothermal, turbulent bubbly gas-liquid flow through a 26.6 mm inner diameter vertical pipe. The measurements were made about 33 diameters downstream from the pipe entrance, gas injection being just upstream of the entrance. The gas phase radial distribution at the measurement plane exhibited influence of the injection device in that higher gas fraction existed in the central region of the pipe. For comparison, velocity field was also measured in isothermal, turbulent single-phase liquid flow through the same pipe at the same axial plane. Measured were the radial distributions of liquid mean axial and radial velocities, axial and radial turbulent intensities, and axial Reynolds shear stress. The radial distributions of gas bubble mean axial velocity and axial velocity fluctuation intensity were also measured by LDV. A dual-sensor fiberoptic probe was used at the same time to measure the radial distributions of gas fraction, bubble mean axial velocity and size slightly downstream of the LDV measurement plane. [References: 22]
机译:速度场是通过激光多普勒测速法在通过26.6毫米内径垂直管的等温湍流气泡状气液流中测量的。在管道入口的下游进行了约33个直径的测量,气体注入恰好在入口的上游。在测量平面上的气相径向分布表现出注入装置的影响,因为在管道的中心区域中存在较高的气体分数。为了进行比较,还测量了等温,湍流单相液体在同一轴向平面通过同一管道的速度场。测量的是液体平均轴向和径向速度的径向分布,轴向和径向湍流强度以及轴向雷诺剪切应力。用LDV测量了气泡的径向分布,表示平均轴向速度和轴向速度波动强度。同时使用双传感器光纤探头来测量气体含量的径向分布,气泡平均轴向速度和LDV测量平面下游的尺寸。 [参考:22]

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