Nolinear Reconstruction for Liquid-liquid Two-phase Medium Ultrasonic Tomography

Hao Liu, C. Tan, F. Dong
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引用次数: 0

Abstract

Industrial Process Tomography possesses unique advantages in biphasic medium measurement and has received broad attention in the past decades. Aiming at the widely existed low contrast biphasic medium, this paper proposed a nonlinear Ultrasonic Transmission Tomography (UTT). Approach using continuous wave excitation. Considering the refraction effect at the biphasic interface, the reconstruction method with nonlinear forward problem and the improved Simultaneous Algebraic Reconstruction Technique (SART) is proposed with high reconstruction accuracy and reconstruction speed. The performance of the reconstruction is quantitatively compared with the state-of-art reconstruction algorithms, where the proposed method can reconstruct inclusions with their number, size and position clearly identified. Quantitatively, the average Relative Error (RE) is 0.4835 using the proposed method, which is reduced by 49.34% and 40.57% compared with FBP and SART separately. Under parallel computation, the computing time of the proposed method reduced 16.56 times compared with the existing bent-ray tracing method. The proposed image reconstruction algorithm is proved to be an effective and improved approach to the liquid-liquid two-phase flow ultrasonic tomography.
液-液两相介质超声层析成像的非线性重建
工业过程层析成像在双相介质测量中具有独特的优势,在过去的几十年里受到了广泛的关注。针对普遍存在的低对比度双相介质,提出了一种非线性超声透射层析成像(UTT)方法。方法采用连续波激励。考虑到双相界面处的折射效应,提出了具有非线性正问题的重构方法和改进的同步代数重构技术(SART),具有较高的重构精度和重构速度。将该方法的重建性能与现有的重建算法进行了定量比较,在现有算法中,所提出的方法可以清晰地识别夹杂物的数量、大小和位置。在定量上,该方法的平均相对误差(RE)为0.4835,比FBP和SART分别降低了49.34%和40.57%。在并行计算条件下,该方法的计算时间比现有的弯曲射线追踪方法缩短了16.56倍。实验证明,所提出的图像重建算法是一种有效的、改进的液-液两相流超声层析成像方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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