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Electrical impedance imaging of phase boundary in two-phase systems with adaptive mesh regeneration technique

机译:自适应网格再生技术在两相系统中相界的电阻抗成像

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摘要

Numerical and experimental works are conducted to develop a visualization technique for the phase distribution in a two-phase system by electrical impedance tomography technique, which reconstructs the resistivity distribution with the electrical responses that are determined by corresponding excitations. In conventional Newton-Raphson method, the flow field is discretized into pixels, each of which has an unknown resistivity value to be determined by the image reconstruction algorithm. The pixels are usually fixed in a predetermined way. In practical cases, such as the impedance imaging of two-phase flow, this model might not be useful. For the two-phase flow system, the impedance of each phase does not change but instead the phase boundary depends on the distribution of dispersed phase. In the present study, a new image reconstruction algorithm employing adaptive mesh regeneration technique is developed for the detection of phase boundary. Numerical works show that the proposed method can treat two-phase systems reasonably even with some errors in measurement data. Also, with an apparatus developed for impedance imaging this study attempts to reconstruct the images of the simulated bubble distributions and the reconstructed images imply the potential possibility of the electrical impedance tomography for the two-phase flow visualization.
机译:进行了数值和实验工作,以通过电阻抗层析成像技术开发出两相系统中相分布的可视化技术,该技术利用相应的激励确定的电响应来重建电阻率分布。在常规的牛顿-拉夫森方法中,流场被离散成像素,每个像素具有未知的电阻率值,该电阻率值将由图像重建算法确定。像素通常以预定方式固定。在实际情况下,例如两相流的阻抗成像,此模型可能没有用。对于两相流系统,每个相的阻抗不改变,而是相界取决于分散相的分布。在本研究中,开发了一种采用自适应网格再生技术的新图像重建算法来检测相边界。数值实验表明,所提出的方法即使在测量数据存在误差的情况下,也能合理处理两相系统。同样,对于开发用于阻抗成像的设备,本研究尝试重建模拟气泡分布的图像,并且重建的图像暗示了用于两相流可视化的电阻抗层析成像的潜在可能性。

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