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Experimental Investigation of Horizontal Gas-Liquid Stratified and Annular Flow using Wire Mesh Sensor

机译:丝网传感器水平气液分层和环形流动的实验研究

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Stratified and annular gas-liquid flow patterns are commonly encountered in oil and gas transportation pipelines. The measurement and visualization of two-phase flow characteristics is of great importance as two-phase flows persist in many fluids engineering applications. A Wire Mesh Sensor technique based on conductance measurements was applied to investigate two-phase horizontal pipe flow. The horizontal flow test section consisting of a 76 mm ID pipe, 18 m long was employed to generate stratified and annular flow conditions. A 16×16 wire configuration sensor, installed at 17 m from the inlet test section, is used to determine the void fraction within the cross-section of the pipe. Physical flow parameters were extracted based on processed raw measured data obtained by the sensors using signal processing techniques. In this work, the principle of wire mesh sensors and the methodology of flow parameter extraction are described. From the obtained raw data time series of void fraction, mean void fraction and characteristic liquid film velocities are determined for different liquid and gas superficial velocities that ranged from 0.03 m/s to 0.2 m/s and from 9 m/s to 34 m/s, respectively. The effects of liquid viscosity on the measured parameters are also investigated using three different viscosities.
机译:石油和天然气运输管道通常遇到分层和环形气体流动模式。随着两相流量在许多流体工程应用中,两相流特性的测量和可视化具有重要意义。应用了基于电导测量的电线网传感器技术来研究两相水平管流。采用由76mm ID管组成的水平流量试验部分,长度为18μm,以产生分层和环形流动条件。一个16×16线配置传感器,从入口试验部分安装在17米处,用于确定管道横截面内的空隙部分。基于使用信号处理技术通过传感器获得的处理后的原始测量数据提取物理流量参数。在这项工作中,描述了金属丝网传感器的原理和流量参数提取的方法。从获得的原始数据时间序列的空隙级分,为不同的液体和气体表面速度确定为0.03m / s至0.2 m / s的不同液体和气体表面薄膜速度和9m / s至34米/分别。还使用三种不同的粘度研究了液体粘度对测量参数的影响。

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