Summers Jason E, Torres Rendell R, Shimizu Yasushi
Program in Architectural Acoustics, Rensselaer Polytechnic Institute, Troy, NY 12180, USA.
J Acoust Soc Am. 2004 Aug;116(2):958-69. doi: 10.1121/1.1763974.
An improved statistical-acoustics model of high-frequency sound fields in coupled rooms is developed by incorporating into prior models geometrical-acoustics corrections for both energy decay within subrooms and energy transfer between subrooms. The conditions under which statistical-acoustics models of coupled rooms are valid approximations to geometrical acoustics are examined by comparison of computational geometrical-acoustics predictions of decay curves in two- and three-room systems with those of both improved and prior statistical-acoustics models. The accuracy of the decay model used within subrooms is found to have a primary influence on the accuracy of predictions in coupled systems. Likewise, nondiffuse transfer of energy is shown to significantly affect decay of energy in systems of coupled rooms. The decrease in energy density of the reverberant field with distance from the source, which is predicted by geometrical acoustics, is found to result in spatial dependence of decay-curve shape for certain coupling geometries. Geometrical effects are shown to contribute to the failure of statistical-acoustics models in the case of strong coupling between subrooms; thus, previously proposed statistical-acoustics criteria cannot predict the point at which the models break down with consistent accuracy.
通过将子室内能量衰减和子室间能量传递的几何声学修正纳入先前模型,开发了一种改进的耦合房间高频声场统计声学模型。通过比较两室和三室系统中衰减曲线的计算几何声学预测与改进后的和先前的统计声学模型的预测,研究了耦合房间统计声学模型在何种条件下是几何声学的有效近似。发现子室内使用的衰减模型的准确性对耦合系统预测的准确性有主要影响。同样,能量的非扩散传递被证明会显著影响耦合房间系统中的能量衰减。几何声学预测的混响声场能量密度随离源距离的减小,被发现会导致某些耦合几何形状下衰减曲线形状的空间依赖性。在子室间强耦合的情况下,几何效应被证明会导致统计声学模型失效;因此,先前提出的统计声学标准无法以一致的准确性预测模型失效的点。