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Study of Ultrasonic Near-Field Region in Ultrasonic Liquid-Level Monitoring System

机译:超声液位监测系统超声近场区域研究

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摘要

In the method of monitoring the liquid level based on ultrasonic impedance, the near-field effect can seriously affect the validity of the results. In this paper, we explore the factors affecting the length of the ultrasonic near field. Based on that, we propose the optimal length and the minimum length of the buffer block to avoid the near field. The evaluations show that when the parameters of the ultrasonic probe are 15 mm in diameter, 1 MHz in frequency, and ±15 V in emitted ultrasonic wave amplitude, the best results are obtained when the length of the buffer block is 22 mm. When the probe diameter is 10 mm, the buffer block length should be ≥5 mm to ensure the validity of the measured results. The evaluation precision is 1 mm. This research can effectively avoid the blind area of emitted waves when using ultrasonic to measure the liquid level. It provides an effective basis for the selection and design of ultrasonic probes.
机译:在基于超声阻抗监测液位的方法中,近场效应可以严重影响结果的有效性。在本文中,我们探讨了影响超声波近场长度的因素。基于此,我们提出了缓冲区块的最佳长度和最小长度,以避免近场。评估表明,当超声波探头的参数直径为15mm时,频率为1MHz,并且发射超声波幅度的±15V,当缓冲块的长度为22毫米时获得最佳结果。当探头直径为10 mm时,缓冲块长度应≥5mm,以确保测量结果的有效性。评估精度为1毫米。该研究可以在使用超声波测量液位时有效避免发射波的盲面积。它为超声波探头的选择和设计提供了有效的基础。

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