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Prediction of sound absorption coefficients of acoustic wedges using finite-difference time-domain analysis

机译:基于时域有限差分法的声楔吸声系数预测

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In this study, a method was developed for predicting sound absorption coefficients of two acoustic wedges by using the finite-difference time domain (FDTD) analysis. The absorption coefficients of two acoustic wedges made of high-density sponge were measured in a low frequency impedance tube. The two wedges were simulated by using the equivalent fluid model based finite-difference time-domain algorithm (EF-FDTD algorithm) in a two-dimensional sound field. The method for predicting absorption coefficients was illustrated, and the factors affecting absorption coefficients were discussed. The calculated sound absorption coefficients were very close to the measured values. The results suggest that the EF-FDTD method is effective and can be potentially used for predicting the absorption coefficient of a wide range of acoustic materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一种方法,通过使用时域有限差分(FDTD)分析来预测两个声学楔的吸声系数。在低频阻抗管中测量了两个由高密度海绵制成的声楔的吸收系数。通过使用基于等效流体模型的有限差分时域算法(EF-FDTD算法)在二维声场中模拟了两个楔形。阐述了吸收系数的预测方法,并讨论了影响吸收系数的因素。计算出的吸声系数非常接近测量值。结果表明,EF-FDTD方法是有效的,可潜在地用于预测各种声学材料的吸收系数。 (C)2019 Elsevier Ltd.保留所有权利。

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