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Modeling and simulation of multi-plane Electrical Capacitance Tomography sensor for flow imaging by using Finite Element Analysis

机译:多平面电容层析成像传感器的有限元分析与建模

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This research work is mainly focused on modeling and simulation of Electrical Capacitance Tomography (ECT) sensor which comprises of 12 electrodes that are fabricated externally. The arrangement of electrodes is in the form of multi-plane (i.e. single and twin-plane electrodes). The Finite Element Method (FEM) can be utilized to simulate and compute capacitance values. This simulation method can provide sensitivity distribution and also helpful in obtaining the permittivity distribution for multi-phase flow. This paper focuses on the need for field simulation in the design and analysis of multi-electrode capacitance sensors for tomographic flow imaging. However, the real sensors are 3D but mostly a cross-section is modeled in 2D. The governing equations and the modeling approach for 2D single- and twin-plane ECT sensor using Electromagnetic Module of COMSOL Multiphysics are discussed in this manuscript. The single- and twin-plane simulation has been done for velocity and volume measurement respectively. An image reconstruction algorithm for ECT have presented in this work is based on the FEM. Simulation results are duly verified by an experimental data that has been obtained from the calculation of gas-oil two-phase flow.
机译:这项研究工作主要集中在电容层析成像(ECT)传感器的建模和仿真上,该传感器由12个外部制造的电极组成。电极的排列为多平面形式(即单平面和双平面电极)。有限元方法(FEM)可用于模拟和计算电容值。该仿真方法可以提供灵敏度分布,并且还有助于获得多相流的介电常数分布。本文着重于在用于层析层析成像的多电极电容传感器的设计和分析中对现场模拟的需求。但是,实际的传感器是3D的,但横截面大多以2D建模。本文讨论了使用COMSOL Multiphysics电磁模块的二维单平面和双平面ECT传感器的控制方程和建模方法。单平面和双平面仿真分别用于速度和体积测量。在这项工作中提出的用于ECT的图像重建算法是基于FEM的。通过从油气两相流计算中获得的实验数据适当地验证了仿真结果。

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