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Finite element analysis of piezoelectric underwater transducers for acoustic characteristics

机译:压电水下传感器声学特性的有限元分析

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摘要

This paper presents a simulation technique for analyzing acoustic characteristics of piezoelectric underwater transducers. A finite element method is adopted for modeling piezoelectric coupled problems including material damping and fluid-structure interaction problems by taking system matrices in complex form. For the finite element modeling of unbounded acoustic fluid, infinite wave envelope element (IWEE) is adopted to take into account the infinite domain. An in-house finite element program is developed and technical issues for implementing the program are explained. Using the simulation program, acoustic characteristics of tonpilz transducer are analyzed in terms of modal analysis, radiated pressure distribution, pressure spectrum, transmitting-voltage response and impedance analysis along with experimental comparison. The developed simulation technique can be used for designing ultrasonic transducers in the areas of nondestructive evaluation, underwater acoustics and bioengineering.
机译:本文提出了一种用于分析压电水下传感器声学特性的仿真技术。通过采用复杂形式的系统矩阵,采用有限元方法对压电耦合问题建模,包括材料阻尼和流固耦合问题。对于无界声流体的有限元建模,采用无限波包络单元(IWEE)来考虑无限域。开发了内部有限元程序,并解释了实施该程序的技术问题。使用仿真程序,从模态分析,辐射压力分布,压力谱,发射电压响应和阻抗分析以及实验比较的角度分析了tonpilz换能器的声学特性。所开发的仿真技术可用于无损评估,水下声学和生物工程领域的超声换能器设计。

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