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首页> 外文期刊>Journal of Sound and Vibration >Interpretation of the Acoustic Black Hole effect based on the concept of critical coupling
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Interpretation of the Acoustic Black Hole effect based on the concept of critical coupling

机译:基于关键耦合概念的声学黑洞效应解读

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摘要

An Acoustic Black Hole (ABH) in a one-dimensional (1D) beam is a passive vibration damping device based on a local reduction of the beam thickness attached to a thin layer of attenuating material. This work aims at revisiting the ABH effect by analysing the ABH trapped modes in the complex frequency plane. This analysis relies on an analytical model based on the one-dimensional thin beam theory and the transfer matrix method which assumes that the ABH termination is discretised by constant thickness piecewise elements. The model is validated with numerical simulations by the Finite Element Method. The reflection coefficients of several ABH terminations are studied. The results show that an ABH presents an infinite number of modes associated to an infinite number of poles and zeros of the reflection coefficient, the density and quality factor of which depend on the order of the ABH profile. By considering the ABH termination as an open lossy resonator, its damping efficiency results therefore from a balance between the energy leakage of each mode and its inherent losses, known as the critical coupling condition. In particular, the broadband absorption of the vibration energy is achieved for frequencies higher than that of the mode that is critically coupled. This type of analysis is used to interpret the ABH effect. It provides the losses needed to obtain the critical coupling condition, and is suitable for the optimisation of one-dimensional ABH terminations. (C) 2020 Elsevier Ltd. All rights reserved.
机译:一维(1D)光束中的声学黑洞(ABH)是基于附接到薄层衰减材料层的光束厚度的局部减小的被动减振装置。这项工作旨在通过分析复杂频率平面中的ABH被困模式来重新审视ABH效果。该分析依赖于基于一维薄光束理论的分析模型和传输矩阵方法,其假设通过恒定厚度分段元件离散地离散地区的ABH终端。通过有限元方法用数值模拟验证该模型。研究了几个ABH终端的反射系数。结果表明,ABH呈现与反射系数的无限数量和零相关联的无限数量的模式,其密度和质量因子取决于ABH谱的顺序。通过将ABH终止作为开放式振荡谐振器,因此其阻尼效率因此从每个模式的能量泄漏之间的平衡和其固有损耗,称为关键耦合条件。特别地,对于高于尺寸耦合的模式的频率,实现振动能量的宽带吸收。这种类型的分析用于解释ABH效应。它提供获得临界耦合条件所需的损耗,并且适合于优化一维ABH终端。 (c)2020 elestvier有限公司保留所有权利。

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