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An acoustic window system with optimum ventilation and daylighting performance

机译:具有最佳通风和采光性能的隔音窗系统

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The paper presents a series of theoretical, experimental and numerical studies on using transparent micro-perforated absorbers in a window system to allow noise attenuation whilst at the same time maintaining ventilation for comfort and daylighting. The underlying theory for micro-perforated absorbers and the application in silencers is examined. Experimental results between a semi-anechoic chamber and a reverberant chamber using a standard window mock-up are presented. Numerical simulation using finite element method is summarised, considering the effects of opening size, air gap, louvers, hood, and absorbers. It is shown that such a window system can perform better than closed single glazed windows, while still allowing for significantly more ventilation for comfort than most current systems as well as for high levels of light ingress.
机译:本文介绍了一系列有关在窗户系统中使用透明微孔吸收器的理论,实验和数值研究,以实现噪声衰减,同时又保持通风以达到舒适和采光的目的。研究了微孔吸收器的基本理论及其在消音器中的应用。给出了使用标准窗口模型在半消声室和混响室之间的实验结果。总结了使用有限元方法进行的数值模拟,其中考虑了开口尺寸,气隙,百叶窗,罩和吸收器的影响。结果表明,这种窗户系统比封闭的单层玻璃窗户性能更好,同时与大多数现有系统相比,在舒适性和高水平光线入射方面仍可提供更多的通风。

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