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首页> 外文期刊>Sensors Journal, IEEE >Water Holdup Measurement of Gas-Liquid Flows Using Distributed Differential Pressure Sensors
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Water Holdup Measurement of Gas-Liquid Flows Using Distributed Differential Pressure Sensors

机译:使用分布式差压传感器的气液流量测量

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摘要

In order to reduce the measurement error caused by non-uniform distribution of dispersed phase, distributed differential pressure sensors are used to measure the pressure drop of gas-liquid flows in small diameter pipe. Water holdup in vertical upward pipe is predicted by the distributed differential pressure sensors, based on the correlations of mixture friction coefficient ${f}_{extit {tp}}$ under different flow patterns. The water holdup measured by the rotating electric field conductivity sensor is used as the reference value based on the improved Maxwell equations. The dynamic experiments prove that the water holdup prediction accuracy of Ansari model is higher than that of Zhang model, and it can achieve a satisfactory prediction result for water holdup of gas-liquid two-phase flow in small diameter pipe. The average absolute deviation (AAD) of the predicted water holdup relative to the reference water holdup is 0.026, and the average absolute percentage deviation (AAPD) is 5.52%.
机译:为了降低由分散相的不均匀分布引起的测量误差,分布式差压传感器用于测量小直径管中的气液流量的压降。基于混合摩擦系数 $ {f} _ { textit {tp}} $ 在不同的流动模式下。通过旋转电场电导率传感器测量的水保持用作基于改进的麦克斯韦方程的参考值。动态实验证明,ANSARI模型的水储水预测精度高于张模型的预测精度,可以实现小直径管中的气液两相流量的令人满意的预测结果。预测水持续相对于参考水持有的平均绝对偏差(AAD)为0.026,平均绝对百分比偏差(AAPD)为5.52%。

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