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Boundary element method to estimate the time-varying interfacial boundary in horizontal immiscible liquids flow using electrical resistance tomography

机译:用电阻层析成像法估计水平不混溶液体流动的时变界面边界的边界元方法

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摘要

Flow of immiscible liquids through horizontal pipe is observed in many industrial process applications. The flow is mainly characterized by its flow regime, relative phase velocities, liquid fraction and water holdup. Electrical resistance tomography (ERT) that provides a cross-sectional image of flow distribution is helpful in monitoring the process. In this paper, the moving interfacial boundary between the immiscible liquids of stratified flow is estimated based on the measured voltages on the pipe surface. Determining the time-varying shape and location of the interfacial boundary has a practical significance. It gives us the cross-sectional liquid fraction which is a key parameter to analyze the hydrodynamic properties of flow. The interfacial boundary shape and location is parameterized with discrete front points and the forward solution is formulated using analytical boundary element method (BEM). The analytic formulation of BEM is simple with less number of unknowns therefore it is computationally efficient. Moreover, BEM discretizes the boundaries alone and is therefore appropriate choice for interfacial boundary estimation. To estimate the time-varying boundary, conventional methods that assume no change in flow distribution within the measurement time of full frame of voltage data are inadequate. Dynamic imaging methods that use one or few sets of data can improve the temporal resolution and hence they are more accurate and practical in realistic situations. Inverse problem is treated as a state estimation problem where the front points are considered as state variables and are estimated using extended Kalman filter. Numerical simulations and phantom experiments are performed to validate the performance of the proposed method.
机译:在许多工业过程应用中,观察到不混溶液体通过水平管的流动。流动的主要特征在于其流动方式,相对相速度,液体分数和持水率。电阻层析成像(ERT)提供了流量分布的横截面图像,有助于监控过程。在本文中,根据管道表面上测得的电压估算了分层流动的不混溶液体之间的运动界面边界。确定界面边界的时变形状和位置具有实际意义。它提供了横截面液体分数,这是分析流动的流体动力学特性的关键参数。使用离散的前沿参数化界面边界的形状和位置,并使用分析边界元方法(BEM)制定正解。 BEM的解析公式很简单,未知数较少,因此计算效率很高。此外,BEM仅离散化边界,因此是界面边界估计的适当选择。为了估计随时间变化的边界,传统的方法不足以假设在电压数据全帧的测量时间内流量分布没有变化。使用一组或几组数据的动态成像方法可以提高时间分辨率,因此在实际情况下它们更加准确实用。逆问题被视为状态估计问题,其中将前沿视为状态变量,并使用扩展卡尔曼滤波器对其进行估计。数值模拟和幻影实验进行验证该方法的性能。

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