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Measurement of sound field in cavitating media by an optical fibre-tip hydrophone

机译:用光纤尖端水听器测量空化介质中的声场

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摘要

A fibre-optic technique was applied to measure the sound field in an ultrasonic cleaning vessel under practical conditions. A metal-coated fibre-tip is used as a sensor and a heterodyne interferometer detects the change in the optical path resulting from the movement of the fibre-tip in the sound field. Spectrally resolved sound field parameters such as the fundamental, the subharmonic or cavitation noise are extracted from the measurements and compared with results obtained by a piezo-electric hydrophone. It was found that the fibre sensor provides a signal related to the velocity in the sound field, but the information about cavitation-related parameters is similar to the information for pressure sensing techniques. The fibre-optic sensors have a uniquely high spatial resolution and the sound detection process is strongly influenced by single cavitation events close to the small fibre-tip. This paper shows that fibre-tip sensors are an alternative to common hydrophone techniques. They can open up new possibilities for measurement problems for which so far no solution exists, in particular when a high spatial resolution is required or when the measurement site is small. (c) 2007 Elsevier B.V. All rights reserved.
机译:在实际条件下,采用光纤技术测量超声清洗容器中的声场。使用金属涂层的光纤尖端作为传感器,外差干涉仪检测由于光纤尖端在声场中的移动而导致的光路变化。从测量结果中提取频谱解析的声场参数(例如基波,次谐波或空化噪声),并将其与压电水听器获得的结果进行比较。已经发现,纤维传感器提供了与声场中的速度有关的信号,但是与空化有关的参数的信息类似于压力感测技术的信息。光纤传感器具有独特的高空间分辨率,并且声音检测过程受靠近小光纤尖端的单个空化事件的强烈影响。本文表明,光纤尖端传感器是普通水听器技术的替代方法。它们可以为迄今为止尚无解决方案的测量问题开辟新的可能性,特别是在需要高空间分辨率或测量位置较小的情况下。 (c)2007 Elsevier B.V.保留所有权利。

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