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Absorption performance optimization of perforated plate using multiple-sized holes and a porous separating partition

机译:使用多个尺寸的孔和多孔分隔板优化多孔板的吸收性能

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This research proposes a new type of sound absorptive perforated plate with multiple-sized holes and a porous separating partition in an attempt to extend the sound absorption bandwidth. Separating different sized holes with a porous partition instead of a conventional rigid partition is an unprecedented idea. However, existence of a porous separating partition makes it hard to use theoretical surface impedance models to predict absorption performance. So we introduce appropriate finite element simulation method using the effective density of hole. To consider the end correction effects for hole length and viscosity length of a perforated plate, the effective density of the Johnson-Champoux-Allard model is modified and the end correction lengths of the modified effective density are corrected again in connection with finite element simulation. Material property of a porous separating partition is modeled by the Delany-Bazley material model. After constructing the finite element model, we analyzed the absorption coefficient graphs of perforated plates with two-sized holes and four-sized holes according to the separating partition types: no partition, rigid partition and porous partition. To enhance the wide-band absorption performance, flow resistivity value and thickness of a porous separating partition as well as hole sizes are optimized. From the analysis and design examples, we confirmed that the perforated plate using multiple-sized holes and a porous separating partition can make a continuous frequency range of high absorption coefficient compared to the perforated plate with a conventional rigid partition. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种新型的具有多个孔和多孔分隔壁的吸声穿孔板,以试图扩展吸声带宽。用多孔隔板而不是传统的刚性隔板来分隔不同尺寸的孔是一个空前的想法。但是,多孔分隔壁的存在使得很难使用理论表面阻抗模型来预测吸收性能。因此,我们介绍了利用孔的有效密度进行适当的有限元模拟的方法。为了考虑孔板的孔长度和粘度长度的末端校正效果,修改了Johnson-Champoux-Allard模型的有效密度,并结合有限元模拟再次校正了修改后的有效密度的末端校正长度。多孔分隔隔板的材料特性通过Delany-Bazley材料模型建模。建立了有限元模型后,根据无分隔,刚性分隔和多孔分隔三种分隔类型,分析了带两个孔和四个孔的多孔板的吸收系数图。为了提高宽带吸收性能,优化了多孔分隔壁的流动电阻率值和厚度以及孔的尺寸。从分析和设计实例中,我们证实,与具有常规刚性隔板的多孔板相比,使用多个孔和多孔分隔壁的多孔板可以使吸收系数达到连续的频率范围。 (C)2017 Elsevier Ltd.保留所有权利。

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