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具有并联不等深背腔的微穿孔板吸声体无规入射吸声特性

Random incidence absorption characteristics of micro-perforated panel absorbers with parallel-arranged backing cavities at different depths

  • 摘要: 为拓宽微穿孔板吸声体在无规入射下的吸声带宽, 设计并研究了一种具有并联不等深背腔微穿孔板吸声体的无规入射吸声特性。建立了该吸声体的吸声解析模型和有限元数值仿真模型, 运用解析模型分析了背腔深度序列、穿孔孔径、板厚以及穿孔率等结构参数对吸声体无规入射吸声性能的影响规律。制作了足尺吸声体样件进行了混响室吸声性能测量, 结果表明, 解析模型和有限元模型均与混响室测量结果具有较高的一致性, 可准确地预测吸声体在建筑声学主要关注频段500~4000 Hz的吸声特性。经结构参数优化, 该吸声体在490~4000 Hz频段内无规入射吸声系数平均值可达0.8。

     

    Abstract: To broaden the sound absorption bandwidth of micro-perforated panel absorbers under diffuse field conditions, a micro-perforated panel absorber with parallel-arranged backing cavities at different depths was designed and investigated for its random incidence absorption characteristics. An analytical model and a finite element simulation model for this absorber were established. This analytical model was used to investigate the influence of main structural parameters on acoustic performance, including the sequence of cavity depths, perforation diameter, panel thickness, and perforation rate. Full-scale absorber samples were fabricated and tested in a reverberation chamber. Results show that this analytical model is in good agreement with the finite element model and experimental measurements. It accurately predicts the absorption characteristics of this absorber in the frequency band of 500−4000 Hz, which is the primary concern in the field of architectural acoustics. After optimizing the structural parameters, the average random incidence absorption coefficient of this absorber reached 0.8 in the frequency band 490−4000 Hz.

     

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