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Broadband tonpilz underwater acoustic transducers based on multimode optimization

机译:基于多模优化的宽带tonpilz水声换能器

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摘要

Head flapping has often been considered to be deleterious for obtaining a tonpilz transducer with broadband, high power performance. In the present work, broadband, high power tonpilz transducers have been designed using the finite element (FE) method. Optimized vibrational modes including the flapping mode of the head are effectively used to achieve the broadband performance. The behavior of the transducer in its longitudinal piston mode and in its flapping mode is analysed for in-air and in-water situations. For the 37.8% bandwidth of the center frequency from 28.5 to 41.8 kHz, the amplitude variation of the transmitting voltage response (TVR) does not exceed ±2 dB and a maximum TVR of 146.8 dB (ref. 1 μPa/volt at 1 meter) is obtained. Reasonable agreement between the experimental results and the numerical results is achieved. A maximum sound pressure level of 214.8 dB can be expected. Further numerical calculation indicates that there is potential for increasing the bandwidth by varying other parameters in the design
机译:头扑通常被认为对获得具有宽带,高功率性能的tonpilz换能器有害。在当前工作中,已经使用有限元(FE)方法设计了宽带大功率tonpilz换能器。优化的振动模式(包括磁头的拍打模式)可以有效地实现宽带性能。针对空中和水下情况,分析了换能器在纵向活塞模式和拍打模式下的行为。对于28.5至41.8 kHz的中心频率的37.8%带宽,发射电压响应(TVR)的幅度变化不超过±2 dB,最大TVR为146.8 dB(1米处的参考值为1μPa/ volt)获得。实验结果与数值结果达到了合理的一致性。可以预期最大声压级为214.8 dB。进一步的数值计算表明,通过改变设计中的其他参数,可能会增加带宽

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