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Multiple-frequency calibration of two-dimensional hydrophone arrays for instantaneous beam width measurements of shock-wave lithotripters

机译:二维水听器阵列的多频率校准,用于冲击波碎石机的瞬时波束宽度测量

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摘要

Characterizations of electrohydraulic lithotripters (EHLs) are usually limited to single-point measurements because hydrophone arrays are not readily available, or are prohibitively expensive. Furthermore, beamwidth measurements of peak pressure values made with single-point hydrophones are inaccurate. This inaccuracy comes from the high variability of the acoustic field and the fact that several shocks must be averaged to create a single beamwidth profile when using single-element hydrophones. Previous work demonstrated that characterizing the beam of an EHL with a single-point measurement technique led to an overestimate error of 25% compared to an instantaneous beamwidth measurement using a linear hydrophone array. In this paper, the improvement of our disposable, repeatable, hydrophone array is presented. The geometry was changed to that of a two-dimensional hydrophone array, which allows for the measurement of the instantaneous acoustic field of an EHL and its variation in 2-D. Modifications were made to the hydrophone fabrication methods which improved sensitivity and performance. Finally, a multiple-frequency calibration technique was implemented, allowing absolute pressures to be obtained for each hydrophone element.
机译:电液碎石机(EHL)的表征通常仅限于单点测量,因为水听器阵列不易获得,或者价格昂贵。此外,用单点水听器进行的峰值压力值的波束宽度测量是不准确的。这种不精确性来自于声场的高度可变性,以及在使用单单元水听器时必须平均几次冲击才能产生单个波束宽度轮廓的事实。先前的工作表明,与使用线性水听器阵列进行的瞬时波束宽度测量相比,使用单点测量技术来表征EHL的波束导致了25%的高估误差。在本文中,提出了对我们的一次性可重复水听器阵列的改进。几何形状更改为二维水听器阵列的几何形状,从而可以测量EHL的瞬时声场及其二维变化。对水听器的制造方法进行了修改,以提高灵敏度和性能。最后,实施了一种多频校准技术,可以为每个水听器元件获得绝对压力。

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