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Multi-Angle Liquid Flow Measurement Using Ultrasonic Linear Array Transducer

机译:使用超声波线性阵列换能器进行多角度液体流量测量

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摘要

Most ultrasonic flowmeters utilize several wedge sensors for transmission and reception. Thus, the location and alignment of the sensors are critical factors that determine the performance of the ultrasonic flowmeter. In this study, we proposed an ultrasound liquid flowmeter utilizing a 128-element linear array transducer with a transmit delay control for varying the incidence angles of ultrasound wave transmission. The performance of the flowmeter was evaluated at flow rates of 0–50 L/min in a specially designed pipe system. Flow estimation was performed with the transit-time method using cross-correlation with phase zero-crossing for sub-sample estimation. While a single plane wave approach performed invasive electromagnetic measurements with only 74% accuracy as a reference, a multiple angular compensation method with 24 angles was proposed to increase the accuracy of measurements up to 93%. This study demonstrated the capability of the non-invasive single-sided ultrasonic flowmeter with a linear array transducer for liquid flow measurements in the metal pipe system.
机译:大多数超声波流量计利用几个楔形传感器进行发送和接收。因此,传感器的位置和对准是决定超声流量计性能的关键因素。在这项研究中,我们提出了一种超声波液体流量计,该流量计利用具有128个元素的线性阵列换能器和发射延迟控制来改变超声波的入射角。在专门设计的管道系统中,以0至50 L / min的流量评估了流量计的性能。流量估计是使用过渡时间方法进行的,其中将交叉相关与相位零交叉用于子样本估计。虽然单平面波方法仅以74%的准确度作为参考进行侵入性电磁测量,但提出了一种具有24个角度的多角度补偿方法,可将测量的准确度提高到93%。这项研究证明了具有线性阵列传感器的无创单侧超声流量计在金属管道系统中进行液体流量测量的能力。

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