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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Numerical Model on Sound-Solid Coupling in Human Ear and Study on Sound Pressure of Tympanic Membrane
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Numerical Model on Sound-Solid Coupling in Human Ear and Study on Sound Pressure of Tympanic Membrane

机译:人耳声固耦合数值模型及鼓膜声压研究

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摘要

Establishment of three-dimensional finite-element model of the whole auditory system includes external ear, middle ear, and inner ear. The sound-solid-liquid coupling frequency response analysis of the model was carried out. The correctness of the FE model was verified by comparing the vibration modes of tympanic membrane and stapes footplate with the experimental data. According to calculation results of the model, we make use of the least squares method to fit out the distribution of sound pressure of external auditory canal and obtain the sound pressure function on the tympanic membrane which varies with frequency. Using the sound pressure function, the pressure distribution on the tympanic membrane can be directly derived from the sound pressure at the external auditory canal opening. The sound pressure function can make the boundary conditions of the middle ear structure more accurate in the mechanical research and improve the previous boundary treatment which only applied uniform pressure acting to the tympanic membrane.
机译:建立整个听觉系统的三维有限元模型,包括外耳,中耳和内耳。对模型进行了声固液耦合频率响应分析。通过比较鼓膜和骨足​​板的振动模式与实验数据,验证了有限元模型的正确性。根据模型的计算结果,我们采用最小二乘法拟合外耳道的声压分布,得到了随频率变化的鼓膜声压函数。使用声压功能,可以直接从外耳道开口处的声压得出鼓膜上的压力分布。声压函数可以使中耳结构的边界条件在力学研究中更加准确,并改善以前的边界处理,即仅对鼓膜施加均匀的压力。

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