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Design of new ultrasonic transducer with two elements for flow rate measurement using ultrasonic Doppler method

机译:超声多普勒法测量流量的新型两元件超声换能器的设计

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In this present study, we developed a new two-dimensional velocity profile measurement system by utilizing two-elements ultrasonic transducer with both elements acting as transmitter and receiver. The aim is to obtain two-dimensional velocity information along measurement line and calculate the flow rate. We evaluate the transducer with sound pressure measurement and flow measurement. From the sound pressure measurement, there is one main lobe exist at the center between the elements due to the interference of both waves generated from each element. Therefore two-dimensional velocity measurement is possible. From the flow measurement, we can get two-dimensional velocity profile and calculate the flow rate. We compared the flow rate result with the flow rate reading from the electromagnetic flow meter, and we obtained the error of 4.98% for pipe flow and 10.43% for pipe flow under swirl effect with the measurement range from 8 mm to 50 mm. We used B-spline interpolation with Gaussian fitting to estimate the profile from range 0 mm to 8 mm and finally we were able to obtain full vector profile.
机译:在本研究中,我们开发了一种新的二维速度分布测量系统,该系统利用两个元素的超声换能器将两个元素同时用作发送器和接收器。目的是获得沿测量线的二维速度信息并计算流量。我们通过声压测量和流量测量来评估换能器。根据声压测量,由于每个元素产生的两个波的干扰,在元素之间的中心存在一个主瓣。因此,可以进行二维速度测量。从流量测量中,我们可以获得二维速度分布并计算流量。我们将流量结果与从电磁流量计读取的流量进行比较,在8mm至50mm的测量范围内,在旋流效应下,管道流量的误差为4.98%,管道流量的误差为10.43%。我们使用B样条插值和高斯拟合来估计0mm到8mm范围内的轮廓,最后我们可以获得完整的矢量轮廓。

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