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On the potential of meta-poro-elastic systems with mass inclusions to achieve broadband near-perfect absorption coefficient

机译:关于具有质量夹杂物的Meta-Poro-Elastic系统的潜力,实现宽带近乎完美的吸收系数

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This paper discusses the potential of meta-poro-elastic systems with small mass inclusions to create broadband sound absorption performance under the quarter-wavelength limit. A first feasibility study is done to evaluate whether embedding small mass inclusions in specific types of foam can lead to near-perfect absorption at tuned frequencies. This paper includes an optimization routine to find the material properties that maximize the losses due to the mass inclusion such that a ncar-pcrfect/perfect absorption coefficient can be achieved at specified frequencies. The near-perfect absorption is due to the mass-spring effect, which leads to an increase in the viscous loss. Therefore, it is efficient in the viscous regime. The well-known critical frequency, which depends on the porosity and flow resistivity of the material, is commonly used as a criteria to distinguish the viscous regime from the inertial regime. However, for the types of foam of interest to this work, the value of critical frequency is below the mass-spring resonance frequency. Hence, the inverse quality factor is used to provides a more accurate estimation on the frequency at which the transition from the viscous regime to the inertial regime.
机译:本文讨论了具有小质量夹杂物的Meta-Poro-Elastic系统的潜力,以在四分之一波长限制下产生宽带吸声性能。完成第一可行性研究以评估嵌入特定类型的泡沫中的小质量夹杂物是否可以导致调谐频率的接近完美吸收。本文包括优化例程,以找到由于质量夹杂物而最大化损耗的材料特性,使得可以在特定频率下实现NCAR-PCRFect /完美吸收系数。近乎完美的吸收是由于质量弹簧效果,这导致粘性损失的增加。因此,它在粘性制度中是有效的。众所周知的临界频率,这取决于材料的孔隙率和流动电阻率,通常用作区分粘性制度与惯性制度的标准。然而,对于本作利益的泡沫类型,临界频率的值低于质量弹簧谐振频率。因此,逆质量因子用于提供对从粘性制度转换到惯性方案的频率的更准确的估计。

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