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Flat-walled multilayered anechoic linings: Optimization and application

机译:平壁多层消声衬板:优化与应用

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摘要

The concept of flat-walled multilayered absorbent linings for anechoic rooms was proposed three decades ago. Flat-walled linings have the advantage of being less complicated and, hence, less costly to manufacture and install than the individual units such as wedges. However, there are difficulties in optimizing the design of such absorbent linings. In the present work, the design of a flat-walled multilayered anechoic lining that targeted a 250 Hz cut-off frequency and a 300 mm maximum lining thickness was first optimized using an evolutionary algorithm. Sixteen of the most commonly used commercial fibrous building insulation materials available in Australia were investigated and fourteen design options (i.e., material combinations) were found by the evolutionary algorithm. These options were then evaluated in accordance with their costs and measured acoustic absorption performances. Finally, the completed anechoic room, where the optimized design was applied, was qualified and the results showed that a large percentage (75% - 85%) of the distance between the sound source and the room boundaries, on the traverses made, were anechoic. (c) 2005 Acoustical Society of America.
机译:消声室的平壁多层吸收衬里的概念是三年前提出的。平壁衬砌的优势是,与单个单元(例如,楔块)相比,其复杂程度较低,因此制造和安装成本较低。但是,优化这种吸收衬里的设计存在困难。在当前工作中,首先使用进化算法优化了针对250 Hz截止频率和300 mm最大衬里厚度的平壁多层消声衬里的设计。对澳大利亚提供的16种最常用的商业纤维建筑保温材料进行了调查,并通过进化算法找到了14种设计选择(即材料组合)。然后根据成本和测得的吸声性能对这些选件进行评估。最后,采用优化设计的完整消声室合格,结果表明,在经过的导线上,很大一部分(75%-85%)的声源与房间边界之间的距离是消声的。 (c)2005年美国声学学会。

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