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Investigating the Effect of Shape on Acoustic Performance of Micro Perforated Absorber at Low Frequencies

机译:在低频下调查形状对微孔吸收器声学性能的影响

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Nowadays, micro-perforated absorbers are one of the structures that are widely used nowadays. The sound absorption mechanism is performed by viscous energy losses in the cavities on the plate. This paper examined the effect of the surface shape on the micro perforated absorber performance at low frequencies (less than 500 Hz). The three-dimensional finite element method was used to predict the absorption coefficient of this group of adsorbents. Also, the results obtained from the shaped absorbers were compared with the flat micro perforated absorbers. After validating the numerical results, six different designs were defined as the surface shape of the micro perforated plates in the COMSOL Multiphysics, Ver. 5.3a software. The results reflected the fact that the factor of the surface shape can be used as a contributing factor in some frequencies. In general, the dented or concave shapes provide better outcomes than other flat designs and shapes and the convex or outward shapes bring the weakest results.
机译:如今,微穿孔吸收剂是现在广泛使用的结构之一。吸声机构通过板上的空腔中的粘性能量损失来执行。本文检测了表面形状对低频(小于500Hz)的微穿孔吸收性能的影响。三维有限元方法用于预测该组吸附剂的吸收系数。而且,将从成型吸收剂获得的结果与平坦的微穿孔吸收剂进行比较。在验证数值结果之后,将六种不同的设计定义为Comsol Multiphysics中的微穿孔板的表面形状,Ver。 5.3A软件。结果反映了表面形状的因子可以用作一些频率的贡献因子。通常,凹陷或凹形形状提供比其他平面设计和形状更好的结果,并且凸面或向外的形状带来最弱的结果。

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