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Evaluation of electrical capacitance tomography sensor based on the coupling of fluid field and electrostatic field

机译:基于流场和静电场耦合的电容层析成像传感器评估

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Electrical capacitance tomography (ECT) is based on capacitance measurements from electrode pairs mounted outside of a pipe or vessel. The structure of ECT sensors is vital to image quality. In this paper, issues with the number of electrodes and the electrode covering ratio for complex liquid-solids flows in a rotating device are investigated based on a new coupling simulation model. The number of electrodes is increased from 4 to 32 while the electrode covering ratio is changed from 0.1 to 0.9. Using the coupling simulation method, real permittivity distributions and the corresponding capacitance data at 0, 0.5, 1, 2, 3, 5, and 8 s with a rotation speed of 96 rotations per minute (rpm) are collected. Linear back projection (LBP) and Landweber iteration algorithms are used for image reconstruction. The quality of reconstructed images is evaluated by correlation coefficient compared with the real permittivity distributions obtained from the coupling simulation. The sensitivity for each sensor is analyzed and compared with the correlation coefficient. The capacitance data with a range of signal-to-noise ratios (SNRs) of 45, 50, 55 and 60 dB are generated to evaluate the effect of data noise on the performance of ECT sensors. Furthermore, the SNRs of experimental data are analyzed for a stationary pipe with permittivity distribution. Based on the coupling simulation, 16-electrode ECT sensors are recommended to achieve good image quality.
机译:电容层析成像(ECT)基于安装在管道或容器外部的电极对的电容测量结果。 ECT传感器的结构对于图像质量至关重要。在本文中,基于新的耦合模拟模型,研究了旋转装置中复杂液固流动的电极数量和电极覆盖率问题。电极数从4增加到32,而电极覆盖率从0.1改变到0.9。使用耦合模拟方法,以96转/分钟(rpm)的转速收集0、0.5、1、2、3、5和8 s时的实际介电常数分布和相应的电容数据。线性反投影(LBP)和Landweber迭代算法用于图像重建。通过相关系数与从耦合模拟获得的实际介电常数分布进行比较,可以评估重建图像的质量。分析每个传感器的灵敏度,并将其与相关系数进行比较。产生具有45、50、55和60 dB信噪比(SNR)范围的电容数据,以评估数据噪声对ECT传感器性能的影响。此外,针对具有介电常数分布的固定管分析了实验数据的SNR。基于耦合模拟,建议使用16电极ECT传感器以获得良好的图像质量。

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