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Exploiting the Maxwell-Wagner-Sillars Effect for Displacement-Current Phase Tomography of Two-Phase Flows

机译:利用两相流的位移电流相层析成像的Maxwell-Wagner-Sillars效应

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摘要

We introduce a method based on the Maxwell-Wagner-Sillars (MWS) effect to improve the performance of displacement-current phase tomography (DCPT) applied to two-phase flow imaging. DCPT utilizes as set of mutual admittance measurements between electrodes placed around a region of interest (RoI). This measurement can extract the phase of the displacement current between the electrodes so as to characterize the spatial distribution of the conductivity or dielectric loss inside the RoI. By exploiting the fact that the measured data at different frequencies will exhibit distinct MWS effects, the proposed approach can extract additional information from the measure data set and improve the resolution of DCPT for the imaging of two-phase flows. Numerical simulations along with experimental results illustrate the main findings of this paper.
机译:我们介绍一种基于麦克斯韦-瓦格纳-西拉(MWS)效应的方法,以改善应用于两相流成像的位移电流相层析成像(DCPT)的性能。 DCPT利用放置在感兴趣区域(RoI)周围的电极之间的互导率测量作为一组。该测量可以提取电极之间的位移电流的相位,以表征RoI内部的电导率或介电损耗的空间分布。通过利用不同频率下的测量数据将表现出明显的MWS效应这一事实,所提出的方法可以从测量数据集中提取其他信息,并提高DCPT的分辨率以用于两相流成像。数值模拟和实验结果说明了本文的主要发现。

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