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Numerical Investigations on a Tunable Helmholtz Resonator: Integration of a Passive Polymer Membrane in a Helmholtz Resonator

机译:可调谐亥姆霍兹谐振器的数值研究:亥姆霍兹谐振器中无源聚合物膜的集成

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A Helmholtz resonator is a passive acoustic resonator used to control a single frequency resulting from the cavity volume and the resonator neck size. The main purpose of work in progress is to propose to investigate numerically some strategies allowing real-time tunability of the Helmholtz resonator in order to provide a wider bandwidth and hence enhance noise attenuation. Two concepts will be developed, both based on the use of electroactive polymer (EAP) membranes. These materials exhibit a change of shape when stimulated by an electric field. The first concept consists in replacing the resonator rigid back plate by an EAP material membrane, while on the second one, the membrane is located in front of the resonator. Numerical investigations are performed using several kinds of a passive EAPs material membranes in order to determine the practical potential of these concepts. Significant enhancements of the transmission loss and/or the absorption properties could be obtained in the low frequency band by tuning the volume and then the resonance frequencies of the resonator. In the current paper, only the passive performances of these two concepts are discussed.
机译:Helmholtz谐振器是一种被动声谐振器,用于控制由腔体积和谐振器颈部尺寸产生的单个频率。工作的主要目的是建议在数值上调查一些策略,允许亥姆霍兹谐振器的实时可调性以提供更宽的带宽,从而提高噪声衰减。基于使用电活性聚合物(EAP)膜,将开发两个概念。当由电场刺激时,这些材料表现出形状的变化。第一概念包括通过EAP材料膜更换谐振器刚性背板,而在第二个膜上,膜位于谐振器的前面。使用几种无源EAP材料膜进行数值研究,以确定这些概念的实际潜力。通过调谐音量然后谐振器的谐振频率,可以在低频带中获得传输损耗和/或吸收特性的显着增强。在目前的论文中,讨论了这两个概念的被动性能。

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