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A boundary element method to estimate the interfacial boundary of two immiscible stratified liquids using electrical resistance tomography

机译:用电阻层析成像估计两种不混溶分层液体界面的边界元方法

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Flow of two immiscible stratified liquids in a pipe is observed in many industrial applications. Estimating the interfacial boundary between the immiscible liquids inside the pipeline can provide valuable information about volume fraction therefore can aid in monitoring the flow process. Several methods are proposed to represent the shape of an open boundary using linear combination of known functions. In this paper, the open boundary is characterized by discrete front points from the reference horizontal line at the center. The boundary parameterization with front points eliminates the fixed end problem that is caused while using Fourier series or a polynomial like a Bezier curve. Therefore, it can be more suitable to practical conditions and can be used to represent any complex shape with fewer unknowns. The forward problem is solved using boundary element method (BEM) with the integral equations solved analytically. The proposed BEM formulation is computationally efficient due to less number of system equations to solve. The unknown front points locations that describe the boundary surface are estimated using Levenberg-Marquardt method. Numerical and phantom experiments are performed to validate the performance of the proposed computational method.
机译:在许多工业应用中,观察到管道中两种不混溶的分层液体的流动。估计管道内不混溶液体之间的界面边界可以提供有关体积分数的有价值的信息,因此可以帮助监控流动过程。提出了几种使用已知函数的线性组合表示开放边界形状的方法。在本文中,开放边界的特征是中心的参考水平线的离散前沿。具有前沿的边界参数化消除了使用傅里叶级数或多项式(如贝塞尔曲线)时引起的固定端问题。因此,它可能更适合于实际条件,并且可以用来表示未知数较少的任何复杂形状。使用边界元法(BEM)解决了前向问题,并通过积分方程进行了解析。由于要解决的系统方程数量较少,因此所提出的BEM公式在计算上非常有效。使用Levenberg-Marquardt方法估计描述边界表面的未知前端位置。进行数值和幻像实验以验证所提出的计算方法的性能。

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