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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Methodology for developing a high-precision ultrasound flow meter and fluid velocity profile reconstruction
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Methodology for developing a high-precision ultrasound flow meter and fluid velocity profile reconstruction

机译:开发高精度超声波流量计和流体速度分布图的方法论

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This article reports the methodology used to develop a high-precision ultrasound transit time flow meter dedicated to liquid hydrocarbons. This kind of flow meter is designed for custody transfer applications requiring accuracy better than 0.15% of reading. We focus here on certain specific points to achieve this accuracy. The transit time method needs to estimate accurately the time delay between signals received by a pair of transducers. In this study, we review different ways of estimating this time delay. We also propose a specific configuration of the flow meter paths. In particular, this configuration compensates for the swirl phenomenon, which has a significant impact on the accuracy of the flow meter. We also propose a theoretical parametric profile to reconstruct the fluid velocity profile in order to perform in situ diagnosis of the flow. The parameters of the model are estimated from the measurements of the flow meter. Simulations and experimental results showed that this method provides characterization of the flow in disturbed and undisturbed flow conditions.
机译:本文报告了用于开发专用于液态碳氢化合物的高精度超声渡越时间流量计的方法。这种流量计专为贸易交接应用而设计,要求精度高于读数的0.15%。我们在此集中于某些特定点上,以实现此准确性。渡越时间方法需要准确估计一对换能器接收到的信号之间的时间延迟。在这项研究中,我们回顾了估算此时间延迟的不同方法。我们还提出了流量计路径的特定配置。特别地,这种构造补偿了旋涡现象,该旋涡现象对流量计的精度具有重大影响。我们还提出了一种理论上的参数配置文件,以重构流体速度配置文件,以便对流量进行现场诊断。该模型的参数是根据流量计的测量值估算的。仿真和实验结果表明,该方法可以对扰动和无扰动的流动情况进行表征。

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