Investigation on the influence of wall thickness on the reception signal in a PFA-made ultrasonic flow sensor
ISSN: 0260-2288
Article publication date: 14 March 2024
Issue publication date: 9 April 2024
Abstract
Purpose
In a coaxial ultrasonic flow sensor (UFS), wall thickness is a vital parameter of the measurement tube, especially those with small inner diameters. The paper aims to investigate the influence of wall thickness on the transient signal characteristics in an UFS.
Design/methodology/approach
First, the problem was researched experimentally using a series of measurement tubes with different wall thicknesses. Second, a finite element method–based model in the time domain was established to validate the experimental results and further discussion. Finally, the plane wave assumption and oblique incident theory were used to analyze the wave propagation in the tube, and an idea of wave packet superposition was proposed to reveal the mechanism of the influence of wall thickness.
Findings
Both experimental and simulated results showed that the signal amplitude decreased periodically as the wall thickness increased, and the corresponding waveform varied dramatically. Based on the analysis of wave propagation in the measurement tube, a formula concerning the phase difference between wave packets was derived to characterize the signal variation.
Originality/value
This paper provides a new and explicit explanation of the influence of wall thickness on the transient signal in a co-axial UFS. Both experimental and simulated results were presented, and the mechanism was clearly described.
Keywords
Acknowledgements
Funding: This study was supported by the National Natural Science Foundation of China, 51875506, and the Science Fund for Creative Research Groups of National Natural Science Foundation of China, 51821093.
Citation
Hu, L., Liu, C., Su, R. and Liu, W. (2024), "Investigation on the influence of wall thickness on the reception signal in a PFA-made ultrasonic flow sensor", Sensor Review, Vol. 44 No. 2, pp. 149-158. https://doi.org/10.1108/SR-03-2023-0055
Publisher
:Emerald Publishing Limited
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