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Effect Of Neck Geometry Of Resonance Cells On Noise Reduction Efficiency In Sound-Absorbing Structures

机译:共振电池颈部几何学对吸音结构降噪效率的影响

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The present work formulates the physical and mathematical models capable to forecast acoustic properties of resonance cells in sound absorbing structures. Distribution of acoustic pressure inside the duct and on sidewall cell was found, loss factor of output acoustic pressure wave was calculated for variety of geometric forms of cell's chamber and neck for monochromatic wave in 100-600Hz frequency range. Analysis of the acoustic pressure fields revealed that cell neck geometry strongly influences on cell resonant frequency and on outlet acoustic pressure loss factor. The effectiveness of the proposed by the authors biconical design of the resonant cell was proved, which increased acoustic radiation at the resonance frequency resulting significant increase of loss ratio of wave acoustic pressure at duct outlet.
机译:本作者制定了能够预测声音吸收结构中共振电池的声学特性的物理和数学模型。发现了管道内和侧壁电池内的声压分布,用于在100-600Hz频率范围内的各种几何形式的细胞室和颈部的各种几何形式的各种几何形式的输出声压波的损耗因子。声压场的分析显示,细胞颈部几何形状对细胞共振频率和出口声压损率的强烈影响。证明了谐振电池的作者BiConical设计提出的有效性,其在共振频率下增加了声辐射,从而导致导管出口处的波声压力损失比率显着增加。

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