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Non-uniform sound intensity distributions when measuring absorption coefficients in reverberation chambers using a phased beam tracing

机译:使用相控光束追踪测量混响室中的吸收系数时的不均匀声强分布

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摘要

Measured absorption coefficients in reverberation chambers often differ from theoretical random incidence absorption coefficients, because ideal assumptions for the theoretical random incidence absorption coefficient are not fulfilled during measurements in actual reverberation chambers. Therefore sound intensity distributions on absorber under measurement conditions have been simulated using a phased beam tracing, and used as correction functions for reducing discrepancies between the measured and theoretical absorption coefficients. Two reverberation rooms were investigated by assuming that a test specimen was attached to a vertical surface and the floor. The frequency-dependent sound intensity distributions on absorbers were found to be affected by the reverberation chamber geometry and dimensions, the absorption capability of the specimen, and the placement of the specimen. High frequency intensity distributions above 1 kHz were similar for all studied cases, but some variations in low frequency intensity distributions were observed. If the non-uniform intensity distribution and a finite size effect are taken into account for correcting the theoretical absorption coefficients, a good agreement is found between corrected and measured statistical absorption coefficients. The non-uniform sound intensity can account for the discrepancy at high frequencies.
机译:混响室中测得的吸收系数通常与理论随机入射吸收系数不同,因为在实际混响室中进行测量时,理论上随机入射吸收系数的理想假设无法满足。因此,已经使用相控束跟踪模拟了在测量条件下吸收器上的声强分布,并将其用作减小测量吸收系数和理论吸收系数之间差异的校正函数。通过假设测试样本附着在垂直表面和地板上,研究了两个混响室。发现吸声器上与频率相关的声强分布受混响室几何形状和尺寸,样品的吸收能力以及样品放置的影响。在所有研究案例中,高于1 kHz的高频强度分布都相似,但观察到低频强度分布有些变化。如果考虑非均匀强度分布和有限尺寸效应来校正理论吸收系数,则在校正和测量的统计吸收系数之间会找到很好的一致性。声音强度不均匀可以解释高频下的差异。

著录项

  • 作者

    Jeong Cheol-Ho;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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