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Gas-liquid Two-phase Flow Measurement Using Coriolis Flowmeters Incorporating Neural Networks

机译:使用结合了神经网络的科里奥利流量计进行气液两相流量测量

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摘要

Coriolis flowmeters are commonly used to measure single phase flow. In recent years attempts are being made to apply Coriolis flowmeters to measure two-phase flows. This paper presents a neural network based approach that has been applied to Coriolis flowmeters to measure both the liquid flow rate and the gas void fraction of a two-phase flow. Experimental tests were conducted on a purpose-built two-phase flow test rig on both horizontal and vertical pipelines. The mass flow rate ranges from 700 kg/h to 14500 kg/h whilst the gas volume fraction is between 0 and 30%. A set of variables, including observed density, apparent mass flow, pressure of the fluid and signals to maintain flow tube oscillation, are considered as inputs to a neural network. Two neural networks are established through training with experimental data obtained from the flow rig on horizontal and vertical pipelines, respectively. The performance of both neural networks is assessed in comparison with the reference readings. Experimental results suggest that the relative errors of the corrected mass flow rate of liquid for the vertical and horizontal installations are no greater than ±1.5% and ±2.5%, respectively. The gas volume fraction is predicted with relative errors of less than ±10% and ±20%, respectively, for vertical and horizontal installations in most cases.
机译:科里奥利流量计通常用于测量单相流量。近年来,尝试将科里奥利流量计应用于测量两相流量。本文介绍了一种基于神经网络的方法,该方法已应用于科里奥利流量计,以测量两相流的液体流速和气体空隙率。在水平和垂直管道上的专用两相流试验台上进行了实验测试。质量流量范围为700 kg / h至14500 kg / h,而气体体积分数在0%至30%之间。一组变量,包括观察到的密度,表观质量流量,流体压力和维持流量管振荡的信号,被视为神经网络的输入。通过训练分别从水平和垂直管道的流动钻机获得的实验数据,建立了两个神经网络。将两个神经网络的性能与参考读数进行比较。实验结果表明,垂直和水平安装的校正液体质量流量的相对误差分别不大于±1.5%和±2.5%。在大多数情况下,垂直和水平安装的气体体积分数的相对误差分别小于±10%和±20%。

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