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OPTIMAL HOLDER CONFIGURATIONS FOR SUSPENDED GLASS PANELS

机译:悬挂玻璃面板的最佳保持器配置

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Suspended glass panels are unframed windows supported by holders located peripherally and in proximity of the panel corners. These panels are made of glass or laminated glass and can be used, among other purposes, as noise barriers. In this study, a two-step procedure is implemented in order to improve the acoustic performance of suspended panels. First, Young's modulus and Poisson's ratio of monolithic and laminated samples are extracted by comparing modal data from simulations, based on finite element method (FEM), and experimental analysis. Once the material properties have been obtained, an optimization procedure is implemented, aiming to find the optimal position of the holders that maximizes the sound transmission loss (TL) at low frequency range. This procedure is based on genetic algorithm (GA), which iteratively provides the position of the holders, hybrid modal FEM/statistical energy analysis (FEM/SEA), which is used to compute the TL of the panels. Eight optimizations have been performed where the TL, averaged in the frequency range 20-300Hz, has been maximized for 8 different panel configurations, i.e. square (1m × 1m) and rectangular (2.5m × 0.8m) geometries, monolithic and laminated tempered glass, 4 and 6 holder set-ups.
机译:悬浮玻璃面板是由位于外围的支架和面板角接近支撑的窗口。这些面板由玻璃或夹层玻璃制成,并且可以在其他目的中使用作为噪声屏障。在该研究中,实施了两步程序,以提高悬浮面板的声学性能。首先,基于有限元法(FEM)和实验分析,通过比较模拟的模拟数据和实验分析,提取杨氏模量和单片和层压样品的比例。一旦获得了材料特性,实现了优化过程,旨在找到保持器的最佳位置,该保持器在低频范围内最大化声音传输损耗(TL)。该过程基于遗传算法(GA),其迭代地提供支架的位置,混合模态FEM /统计能量分析(FEM / SEA),其用于计算面板的TL。已经进行了八种优化,其中TL在频率范围20-300Hz中的平均值最大化为8个不同的面板配置,即方形(1M×1M)和矩形(2.5M×0.8M)几何形状,单片和层压熔体玻璃,4和6个持有人设置。

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