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Imaging of fluid flow by tomographic reconstruction using enhanced multipath ultrasonic measurements

机译:通过增强的多径超声测量,通过断层切断重建的流体流动的成像

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The major goal of the present research was to obtain high accuracy (0.5% or better) in an ultrasonic flowmeter by scanning the flow in an efficient manner, and in such a way that flow in each of the various spots or pixels that make up the cross-section of a pipe would be included and given an appropriate weight. The flow image can be reconstructed by data processing after multipath scanning of the flow. The influence of the flow velocity profile on the accuracy of time-of-flight ultrasonic measurements of the tomographic type was analyzed and verified experimentally. The applicability of iterative algorithms (in particular, algebraic reconstruction technique) and several variants of tomographic algorithms for parallel-path and fan-beam sampling of the flow were examined.
机译:本研究的主要目的是通过以有效的方式扫描流量,并以弥补构成的各种斑点或像素中的每一个流动的方式在超声波流量计中获得高精度(0.5%或更高)。将包括管道的横截面并提供适当的重量。可以通过在流量的多径扫描之后通过数据处理来重建流量图像。在实验上分析并验证了流速谱对飞行型超声波测量时间的准确性的影响。检查了迭代算法(特别是代数重建技术)的适用性和用于平行路径和扇形梁采样的断层算法的若干变体。

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