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Sound reduction index prediction of double-layer gypsum panels through the transfer matrix method

机译:通过传输矩阵方法的双层石膏板的声音缩减指数预测

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摘要

Gypsum board walls are widely used in today’s buildings. A possible way to considerably increase the sound insulation performances of such lightweight walls is to apply double-layer gypsum panels screwed together. Being the boards separated by a thin air gap, there is no shift of the critical frequency from the single-layer case. Moreover, it is possible to obtain an improvement of the sound insulation performances provided by the additional mass given by the double layer. The thin air layer is, however, responsible for a loss of acoustic performance due to the cavity resonance effect in the frequency range between 800 and 1600 Hz. In this article, the increase in the acoustic insulation achieved through the use of coupled gypsum boards is studied and a modelling technique based on the transfer matrix method is used to simulate the acoustic behaviour of the resulting structure; in particular, the thin air layer between the coupled boards is modelled. The simulations are compared with laboratory measurements carried out according to the international standard series ISO 10140. The transfer matrix approach is found to be suitable to describe the problem, provided that a modified model for the air gap between the boards is applied.
机译:石膏板墙壁广泛用于当今的建筑物。显着提高这种轻质墙壁的隔音性能的可能方法是涂在一起的双层石膏板。作为由薄的气隙分开的电路板,没有从单层外壳的临界频率的移位。此外,可以通过双层给出的附加质量来获得所提供的隔音性能的改进。然而,薄的空气层负责声学性能的损失,由于频率范围内的腔谐振效应在800和1600Hz之间。在本文中,研究了通过使用耦合的石膏板实现的声学绝缘的增加,并使用基于传递矩阵方法的建模技术来模拟所得结构的声学行为;特别地,耦合板之间的薄空气层被建模。将模拟与根据国际标准系列ISO 10140进行的实验室测量进行比较。发现转移矩阵方法适合描述该问题,只要施加电路板之间的气隙的修改模型。

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