Lightweight ventilated façade: Acoustic performance in laboratory conditions, analysing the impact of controlled ventilation variations on airborne sound insulation

IF 1.4 Q3 ACOUSTICS
J. L. Zamora Mestre, Andrea Niampira
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引用次数: 2

Abstract

The use of double-sheet enclosures with an intermediate non-ventilated air cavity guarantees a higher airborne sound insulation. The insulation advantages depend on air tightness and the placement of sound absorbing material in the air cavity. The lightweight ventilated façade is a system constructed by the addition of an external light cladding on a heavy single wall to establish an intermediate air cavity. This air cavity can be ventilated under controlled cooling effects, because of Sun’s radiation, and to reduce the risk of dampness caused by rainwater. Owing to this ventilation, acoustic insulation of the lightweight ventilated façade could be less effective. However, some authors indicate that air cavity moderate ventilation does not necessarily lead to a significant reduction in the airborne sound insulation. The authors previously verified this situation in a real building where the existing façade of masonry walls was transformed into a lightweight ventilated façade. The preliminary results indicate the acoustic benefits can be compatible with the hygrothermal benefits derived from controlled ventilation. This article presents the next step, the evaluation of the lightweight ventilated façade acoustic performance under laboratory conditions to revalidate the previous results and refining aspects as the air cavity thickness or the state of openings ventilation. The main results obtained indicate that the airborne sound insulation in laboratory is aligned with the previous results in a real building. Air cavity thickness from 110 to 175 mm and ventilation openings from 0% to 3.84% of the façade area does not lead to a significant reduction in the airborne sound insulation.
轻质通风立面:实验室条件下的声学性能,分析受控通风变化对空气传播隔音的影响
使用带有中间非通风空气腔的双层外壳可以保证更高的空气隔音效果。隔热的优点取决于气密性和在空气腔中放置吸音材料。轻质通风外墙是一种在厚重的单壁上添加外部轻质覆层以建立中间空气腔的系统。由于太阳的辐射,这个空气腔可以在可控的冷却效果下通风,并降低雨水引起的潮湿风险。由于这种通风,轻质通风外墙的隔音效果可能会降低。然而,一些作者指出,空腔适度通风并不一定会显著降低空气中的隔音效果。作者之前在一栋真实的建筑中验证了这种情况,那里现有的砖石墙立面被改造成了轻质通风的立面。初步结果表明,声学效益可以与受控通风带来的湿热效益相兼容。本文介绍了下一步,即在实验室条件下评估轻质通风外墙的声学性能,以重新验证先前的结果,并细化空腔厚度或开口通风状态等方面。所获得的主要结果表明,实验室中的空气隔声与之前在实际建筑中的结果一致。空气腔厚度从110到175 mm,通风开口占立面面积的0%至3.84%,不会显著降低空气中的隔音效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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