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Low frequency sound insulation analysis and evaluation of stiffened building structures

机译:加筋建筑结构的低频隔音分析与评估

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The sound transmission loss (STL) of a stiffened building structure is investigated using a coupled finite element and boundary element method. This STL prediction method takes into account both the effects of boundary condition and the stiffener and allows for an efficient computation of a plate structure with arbitrary boundary conditions and with arbitrary located stiffeners. Experimental measurements with a stiffened plate system are carried out to validate the proposed prediction method. The predictions agree well with the experimental data. The stiffened plate system designed for the experiment has the attraction of simplicity and flexibility and could be a good example for the design of a practical stiffened building structure. A single-number rating method is also proposed for the assessment of structural sound insulation. The rating procedure is similar to the international standard ASTM E413-10, but new reference contours are defined to make the method suitable for sound insulation assessment in the low-frequency range. The proposed methods are subsequently applied to parametric studies that examine the effects of the stiffener on the sound insulation performance of practical glass structures. The possibility of improving sound insulation performance of a building structure by using the stiffener is thereby demonstrated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用耦合有限元和边界元方法研究了刚性建筑结构的传声损失(STL)。这种STL预测方法同时考虑了边界条件和加劲肋的影响,并允许有效计算具有任意边界条件和任意定位加劲肋的板结构。用加强板系统进行了实验测量,以验证所提出的预测方法。这些预测与实验数据非常吻合。设计用于实验的加劲板系统具有简单性和灵活性的吸引力,并且可以作为设计实际加劲建筑结构的一个很好的例子。还提出了一种单数评级方法来评估结构的隔音性能。评级程序与国际标准ASTM E413-10相似,但定义了新的参考轮廓,使该方法适用于低频范围内的隔音评估。拟议的方法随后应用于参数研究,以检查加劲肋对实际玻璃结构的隔音性能的影响。从而说明了通过使用加强件来改善建筑结构的隔音性能的可能性。 (C)2015 Elsevier Ltd.保留所有权利。

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