提高中庭声学舒适性的可持续吸声材料:一种方法论方法

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2023-03-06 DOI:10.3390/acoustics5010017
Chiara Rubino, S. Liuzzi, F. Martellotta
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引用次数: 0

摘要

节约资源的建筑是建筑业最重要的挑战之一,这可以通过限制自然资源的开采并用工业残留物取而代之来实现。目前的工作提出了由纺织废料制成的创新面板,作为巴里理工大学半开放中庭的有效解决方案,在声学上适合用作研究领域。为了表征空间的声场(即混响时间和声压级)和实际声源(即占用空间的学生的声功率级),在空置和占用条件下对中庭进行了几次测量。现场测量结果有助于校准CATT声学软件中实现的几何声学模型,并用于预测所提出的治疗方法的效果。分布了大约700m2的吸收板,导致在500Hz下混响时间从2.4s减少到1.4s,从而导致声压水平估计降低3dB,导致由于语音引起的背景噪声水平降低。此外,由于“伦巴第效应”,背景噪声水平的降低可能会使扬声器的声功率水平降低2 dB,预计总体降低5 dB。
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Sustainable Sound Absorbers to Improve Acoustical Comfort in Atria: A Methodological Approach
Resource-efficient buildings are one of the most important challenges of the construction industry, which could be achieved by limiting the extraction of natural resources and by replacing them with industrial residues. The present work proposes innovative panels made from textile wastes as an efficient solution for making the semi-open atrium in the Polytechnic University of Bari, acoustically suitable for use as an area of study. Several measurements were carried out in the atrium under empty and occupied conditions in order to characterize the sound field of the space (i.e., the reverberation time and the sound pressure level) and the actual sound sources (i.e., the sound power level of the students occupying the space). The on-site measurement results were useful to calibrate a geometrical acoustic model implemented in CATT-Acoustic software and used to predict the effect of the proposed treatments. About 700 m2 of absorbent panels were distributed, leading to a predicted reduction in the reverberation time from 2.4 s to 1.4 s at 500 Hz, and consequently to an estimated 3 dB reduction in sound pressure level, resulting in a reduction in the background noise level due to speech. Furthermore, as a consequence of the “Lombard effect”, a decrease in the background noise level will likely reduce the sound power level of the speakers by 2 dB, with an expected overall reduction of 5 dB.
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CiteScore
3.70
自引率
0.00%
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0
审稿时长
11 weeks
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