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A reference conductivity fitting method for ERT system to achieve void fraction of gas/liquid flow

机译:用于实现气/液流动空隙率的ERT系统的参考电导率拟合方法

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摘要

The void fraction is one of the key parameters in the measurement of gas/liquid two-phase flow. It can be derived from the absolute conductivity distribution based on Maxwell's theory. With Electrical Resistance Tomography (ERT) technology, the absolute conductivity distribution is obtained by multiplying the relative conductivity image with the reference conductivity which is conventionally the liquid conductivity of a gas/liquid flow. Unfortunately the liquid conductivity is not always available. Therefore, a conductivity fitting method is proposed in this paper, to find an optimal reference conductivity, which will be used in substituting the liquid conductivity to reconstruct the quasi-absolute conductivity image. The optimal reference conductivity fitting method is proposed and validated by simulation and experiments under certain flow regimes, e.g. slug flow, annular flow and bubbly flow. The simulation and experimental results show that, independent from prior-knowledge, the fitted quasi-homogenous conductivity is close to the average conductivity of the sensing field. It also leads to a much more accurate estimation of void fraction than the conventional method using liquid conductivity as the reference. With the proposed method, the ERT technique can play a more significant role in the measurement of multiphase flow (MPF). (C) 2014 Elsevier Ltd. All rights reserved.
机译:空隙率是气/液两相流测量中的关键参数之一。可以从基于麦克斯韦理论的绝对电导率分布中得出。使用电阻层析成像(ERT)技术,可以通过将相对电导率图像与参考电导率相乘获得绝对电导率分布,该参考电导率通常是气体/液体流的液体电导率。不幸的是,液体导电性并非总是可用的。因此,本文提出了一种电导率拟合方法,以求出最佳的参考电导率,并将其用于替代液体电导率来重建准绝对电导率图像。提出了最佳的参考电导率拟合方法,并通过在某些流动状态下的模拟和实验进行了验证团状流,环形流和气泡流。仿真和实验结果表明,与先验知识无关,拟合准电导率接近于感应场的平均电导率。与使用液体电导率作为参考的常规方法相比,它还可以更准确地估算空隙率。利用所提出的方法,ERT技术可以在多相流量(MPF)的测量中发挥更重要的作用。 (C)2014 Elsevier Ltd.保留所有权利。

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