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Developing Sub-wavelength Sound Absorber Based on Coiled Up Tube Resonator

机译:基于卷绕管谐振器开发子波长音吸收器

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Sub-wavelength sound absorbers are attractive for dealing with noise control at low-frequency (long-wavelength) sounds. To be efficient in absorbing the sound energy, resonator based absorbers are preferable over fibrous porous ones. In this paper, a coiling up space approach is introduced to a tube resonator system in order to realize a sub-wavelength absorber structure. In this way, the air channel of the tube resonator is a coplanar coiled up channel rather than a straight channel as found in conventional tube resonators. The effect of the geometrical properties of the aperture and the air channel were studied further to look at their relationship to impedance mismatch, which coiling up systems typically suffer from. It was found that the proposed approach could realize a sub-wavelength absorber system up to 1/32 wavelength of peak sound absorption. Selection of the shape and dimensions of the aperture must be done with great care as indicated by the measurement results. Moreover, the behavior of the coiled up tube resonator deviates from that of the straight tube as the reflection factor is increased, although the target resonance frequency is close to the target. It was also found that a squared aperture shape as well as increasing the cavity thickness is useful to deal with impedance mismatch.
机译:子波长声音吸收器对于处理低频(长波长)声音的噪声控制是有吸引力的。为了高效地吸收声能,基于谐振器的吸收剂优选在纤维状多孔组中。在本文中,将空转空间方法引入管谐振器系统,以实现亚波长吸收器结构。以这种方式,管谐振器的空气通道是共面盘绕的通道而不是在传统管谐振器中发现的直线通道。研究了孔和空气通道的几何特性的效果,进一步研究了它们与阻抗失配的关系,该阻抗系统通常遭受。发现该方法可以实现高达1/32波长的峰值吸收的子波长吸收系统。如测量结果所示,必须小心地完成孔的形状和尺寸。此外,随着反射因子增加,卷绕管谐振器的行为偏离直管的行为,尽管目标谐振频率接近目标。还发现,平方孔径以及增加腔厚度可用于处理阻抗失配。

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