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Improved low frequency room responses by considering finiteness of room boundary surfaces

机译:通过考虑房间边界表面的有限性来改善低频房间响应

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For room acoustic simulations, the acoustic characteristics of room boundary surfaces are typically calculated under the assumption that the surfaces are sufficiently large. In this study, a reflection coefficient for finite surfaces is suggested and its performance is assessed through case studies involving simulation of rectangular rooms using a phased beam tracing method. The suggested reflection coefficient employs the radiation impedance of a finite surface by combining the radiation impedance of an infinitely large surface and that of the finite surface backed by an infinite rigid baffle. For 28 surface impedance values that are assigned to all the boundary surfaces, the suggested reflection coefficient is found to improve low frequency responses compared to the infinite panel theory; larger improvements are found for a more disproportionate room, more absorptive surfaces, and surfaces having larger negative phase angles of the surface impedance. A larger improvement is also found for a nonuniform absorption case than for a uniform absorption setting having a similar equivalent absorption coefficient.
机译:对于房间声学模拟,通常在表面足够大的假设下计算房间边界表面的声学特性。在这项研究中,提出了有限表面的反射系数,并通过案例研究评估了它的性能,该案例研究涉及使用相控束跟踪方法模拟矩形房间。建议的反射系数通过将无限大表面的辐射阻抗与无限刚性挡板支撑的有限表面的辐射阻抗相结合来利用有限表面的辐射阻抗。对于分配给所有边界表面的28个表面阻抗值,与无限面板理论相比,发现建议的反射系数可改善低频响应。对于更大的房间,更大的吸收性表面以及具有更大的表面阻抗负相角的表面,发现了更大的改进。对于不均匀吸收情况,也发现比具有相似等效吸收系数的均匀吸收设置更大的改进。

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