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Analytic Formulation for the Sound Absorption of a Panel Absorber under the Effects of Microperforation, Air Pumping, Linear Vibration and Nonlinear Vibration

机译:微孔,抽气,线性振动和非线性振动作用下平板吸声体的吸声解析公式

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摘要

This study includes the first work about the absorption of a panel absorber under the effects of microperforation, air pumping, and linear and nonlinear vibrations. In practice, thin perforated panel absorber is backed by a flexible wall to enhance the acoustic performance within the room. The panel is easily excited to vibrate nonlinearly and the wall can vibrate linearly. However, the assumptions of linear panel vibration and no wall vibration are adopted in many research works. The development of the absorption formula is based on the classical approach and the electroacoustic analogy, in which the impedances of microperforation, air pumping, and linear and nonlinear vibrations are in parallel and connected to that of the air cavity in series. Unlike those finite element, numerical integration, and multiscale solution methods and so forth, the analytic formula to calculate the absorption of a panel absorber does not require heavy computation effort and is suitable for engineering calculation purpose. The theoretical result obtained from the proposed method shows reasonable agreement with that from a previous numerical integration method. It can be concluded that the overall absorption bandwidth of a panel absorber with an appropriate configuration can be optimized and widened by making use of the positive effects of microperforation, air pumping, and panel vibration.
机译:这项研究包括在微穿孔,气泵以及线性和非线性振动的影响下吸收面板吸收器的第一项工作。在实践中,薄的多孔板吸收器由柔性墙支撑,以增强室内的声学性能。面板很容易受到激励而非线性地振动,而墙壁则可以线性地振动。但是,许多研究工作都采用了线性面板振动和无壁振动的假设。吸收公式的开发是基于经典方法和电声类比的,其中微穿孔,气泵以及线性和非线性振动的阻抗是并联的,并与气腔的阻抗串联。与那些有限元,数值积分和多尺度求解方法等不同,用于计算面板吸收器吸收率的解析公式不需要大量的计算工作,并且适合工程计算目的。从所提出的方法获得的理论结果与先前的数值积分方法显示出合理的一致性。可以得出结论,通过利用微穿孔,空气泵送和面板振动的积极作用,可以优化和扩大具有适当配置的面板吸收器的总吸收带宽。

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