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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones—Part II: Experimental Validation of Spatial Averaging Model
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Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones—Part II: Experimental Validation of Spatial Averaging Model

机译:选择针头和光纤水听器的敏感元件尺寸的考虑因素-第二部分:空间平均模型的实验验证

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摘要

Acoustic pressure can be measured with a hydrophone. Hydrophone measurements can underestimate incident acoustic pressure due to spatial averaging effects across the hydrophone sensitive element. The spatial averaging filter for a nonlinear focused beam is a low-pass filter that decreases monotonically from 1 to 0 as frequency increases from 0 to infinity. Experiments were performed to test an analytic model for the spatial averaging filter. Nonlinear pressure tone bursts were generated by three source transducers with driving frequencies ranging from 2.5 to 6 MHz, diameters ranging from 19 to 64 mm, and focal lengths ranging from 38 to 89 mm. The nonlinear pressure fields were measured using four needle hydrophones with nominal geometrical sensitive element diameters of 200, 400, 600, and 1000 mu m. The average root-mean-square difference between theoretical and experimental spatial averaging filters was 5.8% +/- 2.6%.
机译:声压可以用水听器测量。由于整个水听器敏感元件的空间平均效应,水听器的测量可能会低估入射声压。非线性聚焦光束的空间平均滤波器是一种低通滤波器,随着频率从0到无穷大而从1到0单调减小。进行了实验以测试空间平均滤波器的分析模型。非线性压力音突发是由三个源换能器产生的,其驱动频率范围为2.5到6 MHz,直径范围为19到64 mm,焦距范围为38到89 mm。使用四个标称几何敏感元件直径分别为200、400、600和1000μm的针状水听器测量非线性压力场。理论和实验空间平均滤波器之间的平均均方根差为5.8%+/- 2.6%。

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