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Spiral Sound Wave Transducer Based on the Longitudinal Vibration

机译:基于纵向振动的螺旋声波换能器

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摘要

A spiral sound wave transducer comprised of longitudinal vibrating elements has been proposed. This transducer was made from eight uniform radial distributed longitudinal vibrating elements, which could effectively generate low frequency underwater acoustic spiral waves. We discuss the production theory of spiral sound waves, which could be synthesized by two orthogonal acoustic dipoles with a phase difference of 90 degrees. The excitation voltage distribution of the transducer for emitting a spiral sound wave and the measurement method for the transducer is given. Three-dimensional finite element modeling (FEM)of the transducer was established for simulating the vibration modes and the acoustic characteristics of the transducers. Further, we fabricated a spiral sound wave transducer based on our design and simulations. It was found that the resonance frequency of the transducer was 10.8 kHz and that the transmitting voltage resonance was 140.5 dB. The underwater sound field measurements demonstrate that our designed transducer based on the longitudinal elements could successfully generate spiral sound waves.
机译:已经提出了一种由纵向振动元件组成的螺旋声波换能器。该换能器由八个均匀的径向分布的纵向振动元件制成,可以有效地产生低频水下声螺旋波。我们讨论了螺旋声波的产生理论,该理论可以由相位差为90度的两个正交声偶极子合成。给出了发射螺旋声波的换能器的激励电压分布和换能器的测量方法。建立换能器的三维有限元建模(FEM),以模拟换能器的振动模式和声学特性。此外,基于我们的设计和仿真,我们制造了螺旋声波换能器。发现换能器的共振频率为10.8kHz,发射电压共振为140.5dB。水下声场测量表明,我们基于纵向元素设计的换能器可以成功生成螺旋声波。

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