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Towards a sustainable approach for sound absorption assessment of building materials: Validation of small-scale reverberation room measurements

机译:朝着建筑材料吸收评估的可持续方法:验证小规模混响室测量

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The research and development phase of sound absorptive building materials by designers, engineers, acoustic consultants and architects need tools for fast, inexpensive preliminary comparison tests on products or acoustic systems. The existing methods exhibit some drawbacks: the impedance tube (IT) is not suitable for 3D systems, while the full-scale reverberation room (FSRR) requires test samples of large dimensions. To overcome these limitations, this work aims to explore the capabilities of small-scale reverberation rooms (SSRR) of about 3 m(3) located at Politecnico di Torino in evaluating the random-incidence sound absorption coefficient. In order to define the range of application and reliability of the method, the considered factors are the sample area and its orientation on the room floor. Four different materials have been tested by applying IT, FSRR and SSRR. The absorption coefficients data obtained with SSRR are compatible with the FSRR benchmarking in the 400-5000 Hz frequency range for three porous materials, and in the range 1000-5000 Hz for the thin rigid material. Therefore, the SSRR can be considered as a reliable alternative for the sound absorption characterization in these ranges for this kind of materials, leading to several benefits. Among them, samples with reduced size can be evaluated with a cheaper equipment in a short time, increasing the overall economical sustainability of the measurement process; in turn, this can encourage designers and architects to perform acoustical measurements since the very early research and development phase, leading to an overall reduction of design costs and improved product quality. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由设计者,工程师,声学顾问和建筑师的吸音建筑材料的研发阶段需要快速,廉价的产品或声学系统的初步比较测试工具。现有方法表现出一些缺点:阻抗管(IT)不适合于3D系统,而全尺寸混响室(FSRR)需要测试大尺寸的测试样本。为了克服这些限制,这项工作旨在探讨位于PoliteCnico diorino的小规模混响房间(SSRR)的功能,在PoliteCnico diorino评估随机发生率吸声系数。为了定义该方法的应用范围和可靠性,所考虑的因素是样品区域及其在房间地板上的方向。通过应用IT,FSRR和SSRR来测试四种不同的材料。用SSRR获得的吸收系数数据与三个多孔材料的400-5000Hz频率范围内的FSRR基准兼容,并且为薄刚性材料的范围为1000-5000Hz。因此,SSRR可以被认为是这种材料的吸音表征的可靠替代方案,这是这种材料的影响,导致几个好处。其中,可以在短时间内使用更便宜的设备进行减少的样品,提高测量过程的总体经济可持续性;反过来,这可以鼓励设计师和建筑师自早期的研发阶段以来进行声学测量,导致设计成本的整体降低和提高产品质量。 (c)2020 elestvier有限公司保留所有权利。

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