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Numerical study of an in-situ technique for measuring surface impedance and reflection coefficient of a locally reacting material with pressure-velocity probes

机译:用压力-速度探针测量局部反应材料的表面阻抗和反射系数的原位技术的数值研究

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The characterization of the acoustic sound pressure and velocity field on the surface of absorbing materials plays a key role for the computation of their surface impedance and absorption coefficients. In this work, a technique based on the equivalent source method (ESM) is used to estimate the pressure and velocity field in order to compute the surface impedance and reflection coefficient of a locally reacting surface. The assessed in-situ technique only requires measuring on a single layer with an array of pressure-velocity (p-u) probes. A numerical simulation study is performed to compare the estimated values with those obtained using a double layer of pressure sensors. Results show a significant improvement in the lower frequency range in terms of both reconstruction accuracy and robustness against noise.
机译:吸收材料表面的声压和速度场的表征对于计算其表面阻抗和吸收系数起着关键作用。在这项工作中,基于等效源方法(ESM)的技术用于估计压力和速度场,以便计算局部反应表面的表面阻抗和反射系数。评估的原位技术仅需要使用压力-速度(p-u)探头阵列在单层上进行测量。进行了数值模拟研究,以将估计值与使用双层压力传感器获得的估计值进行比较。结果表明,在较低的频率范围内,无论是重构精度还是抗噪声能力都得到了显着改善。

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