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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Precise volume fraction measurement for three-phase flow meter using 137Cs gamma source and one detector
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Precise volume fraction measurement for three-phase flow meter using 137Cs gamma source and one detector

机译:使用137CS伽马源和一个检测器的三相流量计的精确体积分数测量

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摘要

The ability to precisely predict the volume fraction percentage of the different phases flowing in a pipe plays an important role in the oil, petroleum and other industries. In this research, the volume fraction percentage was measured precisely in water-gasoil-air three-phase flows by using a single pencil beam gamma ray attenuation technique and multilayer perceptron (MLP) neural network. The volume fraction percentage determination in three-phase flows requires least two gamma radioactive sources with different energies while in this study, we used just a 137Cs source (with the single energy of 662 keV) and a NaI detector. Also, in this work, the MLP neural network in MATLAB software was implemented to predict the volume fraction percentage. The experimental setup provides the required data for training and testing the network. Using this proposed method, the volume fraction was predicted in water-gasoil-air three-phase flows with mean relative error percentage less than 6.95?%. Also, the root mean square error was calculated 2.60. The set-up used is simpler than other proposed methods and cost, radiation safety and shielding requirements are minimized.
机译:精确预测管道中流动的不同阶段的体积分数百分比的能力在石油,石油和其他行业中起重要作用。在该研究中,通过使用单铅束伽马射线衰减技术和多层的Perceptron(MLP)神经网络,精确地测量体积分数百分比。在本研究中,三相流量中的体积分数百分比确定具有不同能量的伽马放射源,只使用137CS源(单次能量为662keV)和Nai检测器。此外,在这项工作中,实施了MATLAB软件中的MLP神经网络以预测体积分数百分比。实验设置提供了用于培训和测试网络的所需数据。使用该方法,在水 - 空气三相流中预测体积分数,其平均相对误差百分比小于6.95Ω%。此外,均均匀误差计算为2.60。使用的设置比其他提出的方法和成本更简单,辐射安全和屏蔽要求最小化。

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