Billon Alexis, Foy Cédric, Picaut Judicaël, Valeau Vincent, Sakout Anas
University of Liège, Sart-Tilman B28, B-4000 Liège, Belgium.
J Acoust Soc Am. 2008 Jun;123(6):4261-71. doi: 10.1121/1.2905242.
In this paper, a modification of the diffusion model for room acoustics is proposed to account for sound transmission between two rooms, a source room and an adjacent room, which are coupled through a partition wall. A system of two diffusion equations, one for each room, together with a set of two boundary conditions, one for the partition wall and one for the other walls of a room, is obtained and numerically solved. The modified diffusion model is validated by numerical comparisons with the statistical theory for several coupled-room configurations by varying the coupling area surface, the absorption coefficient of each room, and the volume of the adjacent room. An experimental comparison is also carried out for two coupled classrooms. The modified diffusion model results agree very well with both the statistical theory and the experimental data. The diffusion model can then be used as an alternative to the statistical theory, especially when the statistical theory is not applicable, that is, when the reverberant sound field is not diffuse. Moreover, the diffusion model allows the prediction of the spatial distribution of sound energy within each coupled room, while the statistical theory gives only one sound level for each room.
本文提出了一种用于室内声学的扩散模型修正方法,以考虑两个房间(一个源房间和一个相邻房间)之间通过隔墙耦合的声音传播。得到了一个由两个扩散方程组成的系统,每个房间一个方程,以及一组两个边界条件,一个用于隔墙,一个用于房间的其他墙壁,并对其进行了数值求解。通过改变耦合面积表面、每个房间的吸收系数和相邻房间的体积,对几种耦合房间配置进行了数值比较,验证了修正后的扩散模型与统计理论的一致性。还对两个耦合教室进行了实验比较。修正后的扩散模型结果与统计理论和实验数据都非常吻合。扩散模型因此可以用作统计理论的替代方法,特别是在统计理论不适用的情况下,即当混响声场不扩散时。此外,扩散模型可以预测每个耦合房间内声能的空间分布,而统计理论只为每个房间给出一个声级。