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Mechanism and Suppression Technology of Mandrel Fiber Hydrophone Resonance Characteristics

机译:心轴纤维水上谐振特性的机理和抑制技术

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The mandrel frame is the most commonly used sensitizing structure for scalar fiber hydrophones, and its material properties and structure directly affect hydrophone performance. The finite element simulation model of a hydrophone is established based on the principle of acoustic-structure interaction. Additionally, the influences of the material and structure on hydrophone sensitivity and the working bandwidth are analyzed in detail. The results show that the sensitivity and bandwidth of the hydrophone restrict each other, and the inner mandrel resonance exerts the main limitation on the bandwidth. Increasing the inner mandrel thickness and reducing the inner mandrel radius can widen the working bandwidth while maintaining sensitivity. The accuracy of the model is verified by via experiments in a lake.
机译:心轴框架是标量纤维流水机最常用的致敏结构,其材料性质和结构直接影响水听器性能。 基于声学结构相互作用的原理建立了水听器的有限元仿真模型。 另外,详细分析了材料和结构对水力敏感性和工作带宽的影响。 结果表明,室内流动器的灵敏度和带宽彼此限制,内部心轴共振施加了带宽的主要限制。 增加内心轴厚度并减小内心轴半径可以加宽在保持灵敏度的同时加宽工作带宽。 通过湖泊的实验验证了模型的准确性。

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