基于兰姆波的液位传感

Nitesh P. Yelve, Siddhesh B. Chavare
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引用次数: 2

摘要

本研究探讨了利用超声导波技术进行液位传感的可能性。该装置由一根铝薄梁组成,该梁部分浸入待测液位的液体中。当波导浸入液体中时,波导中的导波由于其能量泄漏到周围的水中而衰减。泄漏量与波导和周围液体的特性有关。有了这些预测,就有可能把测量的特性与液位联系起来。以往的研究表明,兰姆波的各种模式受到周围液体的影响。因此,兰姆波特性的变化可以作为液位的函数。这种影响也用有限元分析进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid Level Sensing using Lamb waves
The present study examines the possibility of using an ultrasonic guided wave technique for liquid level sensing. The setup consists of an Aluminium thin beam which is partly immersed in a liquid whose level is to be determined. When a wave guide is immersed in the liquid, guided wave in the waveguide is attenuated due to the leakage of its energy into the surrounding water. The amount of leakage is related to the characteristics of the waveguide and the surrounding liquid liquid. With these predictions, it is possible to relate the measured characteristics to the liquid level. Previous research shows that the various modes of Lamb waves are influenced by the surrounding liquid. Therefore, the change in the characteristic of Lamb waves can be used as a function of liquid level. This effect has also been investigated using Finite Element Analysis.
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