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A numerical investigation on the sound insulation of ventilation windows

机译:通风窗隔声的数值研究

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A simulation model is proposed and developed for predicting the sound insulation performance of ventilation windows in buildings, which complies with the laboratory measurement standard ISO 10140. Finite element method (FEM) with verified model definitions is implemented to characterize the airborne sound transmission. An acoustic cavity with rigid-boundaries is used to simulate the diffuse field on the source side of the window, with its diffuseness verified with the pressure field uniformity. On the receiver side, a free field with an infinite baffle is assumed to capture the transmitted sound power. The Sound Reduction Index (SRI) is calculated from the difference between the source and receiving sound power levels in the one-third octave band. Using the proposed model, different ventilation window configurations, consisting of partially open single glazing, double glazing with staggered openings and that with sound absorbers are systematically investigated. Parametric studies are carried out to investigate the effects of various window dimensions and absorber parameters. Simple formulas are proposed for estimating the SRI in the mid-to-high frequency range, providing guidelines for engineering designs. The validity of the numerical model is confirmed by comparisons with full-scale experimental results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出并开发了一种用于预测建筑物通风窗的隔音性能的仿真模型,该模型符合实验室测量标准ISO10140。采用了经过验证的模型定义的有限元方法(FEM)来表征空气传播的声音。具有刚性边界的声腔用于模拟窗口源侧的扩散场,其扩散度已通过压力场均匀性验证。在接收器一侧,假定具有无限挡板的自由场可以捕获传输的声功率。降噪指数(SRI)是根据三分之一八度音阶中的源声功率电平与接收声功率电平之差计算得出的。使用提出的模型,系统地研究了不同的通风窗配置,包括部分打开的单层玻璃,错开的双层玻璃和带有吸声器的双层玻璃。进行参数研究以研究各种窗口尺寸和吸收器参数的影响。提出了简单的公式来估算中高频范围的SRI,为工程设计提供了指导。通过与全面的实验结果进行比较,证实了数值模型的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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