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引信气流诱导声发生器动态激励的敏感参数

Sensitive Parameters of Dynamic Excitation on Fuze Airflow-Induced Acoustic Generator.

作者信息

Li Zhipeng, Li Jinghao, Chen Hejuan

机构信息

School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

出版信息

Micromachines (Basel). 2021 Aug 28;12(9):1033. doi: 10.3390/mi12091033.

Abstract

This paper aims at the power generation requirements of the fuze airflow-induced acoustic generator, analyzes the influence of structural parameters on the fluid power sound source, which is related to the power generation performance and use performance of the generator. In this paper, the orthogonal experiment method is used to study the sensitive parameters that control fluid dynamic sound sources. The results show that the annulus, the confronting distance, and cavity length can all have an impact on the sound pressure amplitude, and the sound pressure amplitude is most sensitive to the change of the confronting distance. However, the length of the resonant cavity has the most significant effect on the sound pressure frequency. The size of the annulus has a weak effect on the sound pressure frequency, and the confronting distance has almost no effect on the sound pressure frequency. The optimal combination scheme with the highest output power is selected according to the sensitive parameters. In addition, the empirical formula for the vibration frequency of the airflow-induced acoustic generator in the short resonant cavity was revised, and the influence of the annular gap on the vibration frequency was added, and the influence factor = 0.3 was determined. The corrected frequency empirical formula has the smallest error between the theoretical value and the experimental value, and can be used as an effective method for estimating the vibration frequency. This provides a reference for the engineering design of the fuze airflow-induced acoustic generator, which has high military value and application prospects.

摘要

本文针对引信气流诱发声发生器的发电需求,分析了结构参数对流体动力声源的影响,这与发生器的发电性能和使用性能相关。本文采用正交试验方法研究控制流体动力声源的敏感参数。结果表明,环形空间、相对距离和空腔长度均会对声压幅值产生影响,且声压幅值对相对距离的变化最为敏感。然而,谐振腔长度对声压频率影响最为显著。环形空间尺寸对声压频率影响较弱,相对距离对声压频率几乎没有影响。根据敏感参数选择了输出功率最高的最优组合方案。此外,修正了短谐振腔内气流诱发声发生器振动频率的经验公式,加入了环形间隙对振动频率的影响,并确定影响系数为0.3。修正后的频率经验公式理论值与实验值之间误差最小,可作为估算振动频率的有效方法。这为引信气流诱发声发生器的工程设计提供了参考,具有较高的军事价值和应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6012/8468079/e0bea1ec8bce/micromachines-12-01033-g001.jpg

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