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Measuring the Level of Liquid in a Partially-Filled Pipe Via the Ultrasonic Pulse-Echo Method Using Acoustic Modeling

机译:使用声学建模通过超声波脉冲回波法测量部分填充管道中的液体液位

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A method for measuring the level of liquid in horizontally oriented pipes was designed, developed and tested. A circuit custom-built for this purpose was used to generate modulated ultrasonic pulses that were applied to a piezo-electric transducer that was used both to launch the acoustic signal and record the returned echoes. The return signal was digitized and transmitted wirelessly to a remote computer for processing where the fluid level measurement consisted of comparing the acquired signal with a simulated signal based upon a model of acoustic wave propagation through the media comprising the set up using cross-correlation with the liquid depth as the free parameter. Laboratory experiments performed with this technique on a steel pipe have shown that it is capable of measuring fluid levels with errors less than 5 mm. Tests on other pipes have been performed, although results were not as accurate. A field test on a pipe in a water tunnel facility successfully determined the presence and absence of liquid in a noisy environment.
机译:设计,开发和测试了一种用于测量水平方向的管道中液位的方法。为此目的专门定制的电路用于生成已调制的超声波脉冲,该脉冲被施加到压电换能器上,该压电换能器既用于发射声波信号,又记录返回的回声。返回信号被数字化并无线传输到远程计算机进行处理,在该计算机中,液位测量包括根据声波在介质中传播的模型(包括使用与设备的互相关性),将采集的信号与模拟信号进行比较。液体深度作为自由参数。用这种技术在钢管上进行的实验室实验表明,它能够测量误差小于5毫米的液位。尽管结果不那么准确,但是已经在其他管道上进行了测试。在水隧道设施中的管道上进行的现场测试成功地确定了在嘈杂环境中是否存在液体。

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