减轻地面噪音的阳台设计性能评估

Acoustics Pub Date : 2024-03-11 DOI:10.3390/acoustics6010015
Long Bin Tan, L. Ang
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引用次数: 0

摘要

本研究旨在解决阳台噪音水平高的难题,同时保持自然通风。通过有限元(FE)建模评估了八种创新的阳台设计,包括扩散器边缘、起伏天花板、亥姆霍兹谐振器、凹槽或声陷阱等元素。插入损耗结果表明,对于许多阳台设计来说,超过 8 米的高度,阳台的降噪效果就会下降。不过,前锯齿形和全波浪形天花板设计在不同楼层的阳台上具有更强的降噪效果。与其他设计相比,锯齿状窗台和凹槽护栏设计在外部区域产生的声压级总体上低 1.5 分贝,这意味着这些设计对附近住宅区的声学损害较小,因为它们倾向于衍射和吸收入射噪声。锯齿形窗台设计对较低楼层更有效,而锯齿形天花板设计对较高楼层更有效。较低楼层采用突出的锯齿状窗台,较高楼层采用锯齿状阳台天花板,这两种设计的组合可使三层住宅单元的噪声摄入量降到最低:可实现 3 分贝以上的降噪效果,为建筑师和设计师寻求降低室外噪声的实用解决方案提供了宝贵的启示,从而为改善阳台降噪提供了可行的方案。我们的研究突出表明,吸声材料的频谱特性可能不太容易调整,在减少顶部空间换取更厚的材料以提高吸声效果并增加粘贴和维护成本的情况下,锯齿状窗台和天花板的弧度实际上可以进行形状调整,例如在高层建筑中每隔 3 到 4 层楼就可以进行一次形状调整,从而更有效地减少噪音的侵入,并可能改善建筑立面的外观。
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Performance Evaluation of Balcony Designs for Mitigating Ground Level Noise
This study aims to tackle the challenge of high noise levels on balconies while preserving natural ventilation. Eight innovative balcony designs, incorporating elements like diffuser edges, undulating ceilings, Helmholtz resonators, grooves, or sound traps, were evaluated via finite element (FE) modeling. The insertion loss results showed that for many balcony designs, noise reduction in the balcony could deteriorate beyond an elevation of 8 m. However, the front jagged and full wavy ceiling designs were shown to be more robust in noise attenuation across balconies on different floors. The jagged ledge and grooved parapet designs yielded an overall 1.5 dBA lower SPL at the exterior regions, compared to other designs, which implies that the designs are less acoustically detrimental to nearby residential blocks as they tend to diffract and absorb incident noise. The jagged ledge design is more effective for lower floors while the jagged ceiling design is more effective for higher floors. A combination of the protruded jagged ledge for the lower floor and jagged balcony ceiling for the higher floor would result in the lowest noise ingress over three stories of residential units: this would be capable of achieving more than 3 dB noise reduction and would offer viable options for improving balcony noise mitigation, by providing valuable insights to architects and designers seeking practical solutions for outdoor noise reduction. Our study highlights that whereas the spectrum characteristics of acoustic absorption materials may be less tunable, and where reduced head space is traded for thicker material for greater ab-sorption and added affixation and maintenance cost, the jagged ledge and ceiling curvatures can actually be shape-tuned, say for every 3 to 4 floors up the high-rise to more effective reduce noise ingress and possibly improve the architecture façade outlook.
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