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A Parameter Study of Coupling Properties in Finite Element Models of Single-stud Double-plate Panels

机译:单钉双板面板有限元模型中耦合特性的参数研究

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Lightweight building techniques are currently progressing fast and using such structures for multi-storey multi-family dwellings is becoming part of the industry standard Partitions in lightweight buildings are often constructed as plates on frame structur es made of either wood or steel. In any case the low frequency sound transmission is often an issue that needs attention. The present paper utilizes a finite element model of a angle-stud double-plate panel structure to investigate how different couplings between the plates and the frame structure affectthe direct sound transmission. Four different coupling configurations are considered: 1) All structural contact points are completely tied; 2) only nodes on the centre lines of the structure are tied; 3) a narrow strip of tied elements connect the frame to the plates; 4) evenly spaced discrete elements are tied. In all cases the interaction between non-tied elements is neglected. The investigations are performed as parameter studies focusing on the effect of change in the model. The finite element model utilizes solid continuum elements for the entire structure. The computations are carried out in frequency domain in the range below 500 Hz and the load acts as a diffuse field on one side of the panel. The obtained results indicate that in order to accurately model sound transmission through a double-plate panel structure, file choice of coupling is an important factor.
机译:轻型建筑技术目前正在快速发展,并且将这种结构用于多层多户住宅正在成为行业标准的一部分。轻型建筑中的隔板通常被构造成由木材或钢制成的框架结构上的板。无论如何,低频声音传输通常是需要注意的问题。本文利用角钉双板面板结构的有限元模型来研究板与框架结构之间的不同耦合如何影响直接的声音传输。考虑了四种不同的耦合配置:1)所有结构接触点都完全绑在一起; 2)仅将结构中心线上的节点打结; 3)窄条绑扎的元件将框架连接到板上; 4)将均匀间隔的离散元素捆绑在一起。在所有情况下,非绑定元素之间的交互都被忽略。这些调查是作为参数研究进行的,重点是模型变化的影响。有限元模型在整个结构中使用了实体连续体元素。计算在低于500 Hz的频域中进行,负载在面板的一侧充当扩散场。获得的结果表明,为了精确地模拟通过双面板结构的声音传输,耦合的文件选择是重要的因素。

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