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首页> 外文期刊>The Journal of the Acoustical Society of America >Behavior of rigid-porous layers at high levels of continuous acoustic excitation: Theory and experiment
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Behavior of rigid-porous layers at high levels of continuous acoustic excitation: Theory and experiment

机译:刚性多孔层在高水平连续声激励下的行为:理论与实验

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A model for the propagation of high amplitude continuous sound through hard-backed rigid-porous layers has been developed which allows for Forchheimer's correction to Darcy's law. The nonlinearity associated with this is shown to be particularly important in the range of frequencies around layer resonance. The model is based on the introduction of particle velocity dependent flow resistivity into the equivalent fluid model expression for complex tortuosity. Thermal effects are accounted for by means of a linear complex compressibility function. The model has been used to derive analytical expressions for surface impedance and reflection coefficient as a function of incident pressure amplitude. Depending on the material parameters, sample thickness, and frequency range the model predicts either growth or decrease of reflection coefficient with sound amplitude. Good agreement between model predictions and data for three rigid-porous materials is demonstrated.
机译:已经开发了一种通过硬背刚性多孔层传播高振幅连续声音的模型,该模型允许福希海默校正达西定律。与之相关的非线性被证明在层共振周围的频率范围内特别重要。该模型基于将颗粒速度相关的流动电阻率引入等效曲率的等效流体模型表达式中。通过线性复数可压缩性函数来说明热效应。该模型已被用来导出表面阻抗和反射系数作为入射压力幅度的函数的解析表达式。根据材料参数,样品厚度和频率范围,模型可以预测反射系数随声振幅的增加或减少。证明了三种硬质多孔材料的模型预测与数据之间的良好一致性。

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