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Experimental estimation of the transmission loss contributions of a sound package placed in a double wall structure

机译:放置在双层结构中的声音包的传输损耗贡献的实验估算

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The objective of this paper is to propose a practical impedance tube method to optimize the sound transmission loss of double wall structure by concentrating on the sound package placed inside the structure. In a previous work, the authors derived an expression that breakdown the transmission loss of a double wall structure containing a sound absorbing blanket separated from the panels by air layers in terms of three main contributions; (i) sound transmission loss of the panels, (ii) sound transmission loss of the blanket and (iii) sound absorption due to multiple reflections inside the cavity. The sound transmission loss contributions of the blanket can thus be estimated from three acoustic measurements using impedance tube techniques: two reflection coefficients at the front face and the rear face of the blanket placed in specific positions characteristic of its position inside the double wall structure and its sound transmission coefficient. The method is first validated in the case of a double wall structure filled with a 2 in. foam material. Next, it is applied to investigate (i) the effect of frame compression of a 2 in. fibre glass in an aeronautic-type double wall structure and (ii) the effect of double porosity with or without porous inclusions in a building-type double wall structure.
机译:本文的目的是提出一种实用的阻抗管方法,通过专注于放置在结构内部的声音包来优化双层结构的传声损耗。在先前的工作中,作者得出了一个表达式,该表达式按三个主要方面来分解了双层壁结构的传输损耗,该双层壁结构包含通过空气层与面板隔开的吸音毯。 (i)面板的传声损失,(ii)毯子的传声损失,以及(iii)由于腔体内的多次反射而引起的吸声。因此,可以通过使用阻抗管技术的三个声学测量值来估算橡皮布的声音传输损耗贡献:橡皮布的正面和背面的两个反射系数放置在双层壁结构及其内部特征的特定位置中声音传输系数。首先在填充有2英寸泡沫材料的双壁结构的情况下验证该方法。接下来,它用于研究(i)2英寸玻璃纤维在航空型双壁结构中的框架压缩效果,以及(ii)在建筑型双壁结构中有或没有多孔夹杂物的双重孔隙率的影响墙结构。

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