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Effect comparative and experimental analysis of diffraction sound field caused by impedance sphere and elastic spherical shell on directivity of vector sensor

机译:阻抗球和弹性球壳引起的衍射声场对矢量传感器方向性的影响比较和实验分析

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摘要

The directivity of acoustic vector sensor (AVS) will be distorted by the sound diffraction of the AVS carrier. A common AVS carrier in accordance with its acoustic characteristics can be approximately classified into three types: absolute soft air cavity, absolute rigid solid metal body and elastic shell filled with air. The focus of this paper is placed on the pressure and vibration velocity component of diffraction acoustic field caused by impedance boundary and elastic spherical boundary. Their mathematical expressions are deduced, and their directivity is also analyzed at different frequencies for different impedances. The results show that: for impedance boundary, its influences on directivity of pressure and vibration velocity is decided by the diffraction background term, and for the elastic shell boundary filled with air, the diffraction acoustic field can be seen as the sum of the diffraction acoustic field of rigid boundary and the radiated sound field of elastic vibration spherical shell boundary. When the frequency of the incident plane wave deviates from the resonance frequency of the elastic vibration shell, the diffraction acoustic field of the rigid boundary plays a major role, but when the frequency of the incident plane wave is close to the resonance frequency, the radiated sound field of the elastic vibration shell will hold the dominance. The experimental data are treated and the errors between the experimental results and the theoretical results are analyzed.
机译:声矢量传感器(AVS)的方向性将因AVS载波的声音衍射而失真。根据其声学特性,常见的AVS载体可大致分为三种类型:绝对软气腔,绝对刚性固体金属体和充满空气的弹性壳。本文的重点放在由阻抗边界和弹性球形边界引起的衍射声场的压力和振动速度分量上。推导了它们的数学表达式,并针对不同的阻抗在不同频率下分析了它们的方向性。结果表明:对于阻抗边界,其对压力和振动速度方向性的影响取决于衍射本底项;对于充满空气的弹性壳边界,可以将衍射声场看作是衍射声的总和。刚性边界的声场和弹性振动球壳边界的辐射声场。当入射平面波的频率偏离弹性振动壳的共振频率时,刚性边界的衍射声场起主要作用,但是当入射平面波的频率接近共振频率时,辐射弹性振动壳的声场将占据主导地位。处理实验数据,分析实验结果与理论结果之间的误差。

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