On the Influence of Scattered Errors over Full-Field Receptances in the Rayleigh Integral Approximation of Sound Radiation from a Vibrating Plate

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2023-10-24 DOI:10.3390/acoustics5040055
Alessandro Zanarini
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Abstract

Spatially dense operative deflection shapes and receptances, acquired in broad frequency bands, increase the detail in the spatial and frequency domains of the responses of parts in actual dynamic loading, manufacturing and mounting conditions. This work remarks the potential benefits of greater spatial resolution in the Rayleigh integral approximation of sound pressure—here reformulated to exploit the increased quality output from experiment-based optical full-field technologies in contactless structural dynamics—radiated by a vibrating surface in a broad frequency band. But in some cases the noise that is scattered over the estimated receptance maps might be heavier, or with different patterns, than expected, with potential repercussions on the sound pressure simulations that come thereof. This work covers this specific latter issue with insight over examples from experiment-based receptances of a lightweight vibrating plate. The effects of error spreading are analysed in the space and frequency domains, with special attention to the contribution of the experiment-based full-field receptance maps to the accuracy of the vibro-acoustic frequency response function maps.
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振动板声辐射瑞利积分近似中散射误差对全场接收的影响
在宽频带中获得的空间密集的操作挠度形状和接收,增加了零件在实际动态加载、制造和安装条件下响应的空间和频域的细节。这项工作指出了更高的空间分辨率在声压的瑞利积分近似中的潜在好处——这里重新表述了利用基于实验的光学全场技术在非接触式结构动力学中的高质量输出——在宽频带振动表面辐射。但在某些情况下,散布在估计的接受图上的噪音可能比预期的更重,或者有不同的模式,这对由此产生的声压模拟有潜在的影响。这项工作涵盖了这一具体的后一个问题的洞察力的例子,从实验为基础的接收轻量级振动板。在空间和频域分析了误差扩散的影响,特别注意基于实验的全场接收图对振声频响函数图精度的贡献。
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CiteScore
3.70
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0.00%
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0
审稿时长
11 weeks
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