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Measurement and prediction of flanking transmissions in wooden CLT constructions using Reverse-SEA

机译:使用逆向SEA的木制CLT结构中侧翼传动的测量和预测

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For lightweight constructions, prediction of Flanking Transmission is a difficult issue. Wooden structures are orthotropic and there are multiple possibilities to compose and design junctions. A model is proposed in standard EN 12354-serie, it uses junction characteristics to be measured. In this article authors show measurements results performed on multistory buildings erected during 2016. Measurement results used are generated from 2 Cross Laminated Timber (CLT) Buildings. The modelling strategy to predict such structures is detailed. The framework of the methodology is Statistical Energy Analysis (SEA). SEA involves cutting the structure into subsystems and decomposing the spectrum into third-octaves or octaves. In this way, the exchange of energy flow in the substructures can be analysed. The parameters that govern vibrational transmission between subsystems are damping and coupling loss factors and can be identified experimentally by reversing the problem. The approach is, first, based on sub-structuring strategy of structure; second, on experimentally measured coupling and damping loss factors; third, on extracting vibration level difference to estimate one by one all flanking passes. All results were generated during "Acoudeum" project financed by INEF4 - ANR platform.
机译:对于轻型结构,侧翼传动的预测是一个难题。木质结构是正交异性的,有多种可能性可以组成和设计路口。在标准EN 12354系列中提出了一个模型,该模型使用要测量的结点特性。在本文中,作者显示了对2016年竖立的多层建筑物进行的测量结果。所使用的测量结果是从2栋交叉层压木材(CLT)建筑物中生成的。详细介绍了预测此类结构的建模策略。该方法的框架是统计能量分析(SEA)。 SEA涉及将结构切割为子系统,并将频谱分解为三个八度或八度。这样,可以分析子结构中的能量流交换。控制子系统之间振动传递的参数是阻尼和耦合损耗因子,可以通过逆转该问题通过实验确定。首先,该方法基于结构的子结构化策略;第二,关于实验测量的耦合和阻尼损耗因子;第三,在提取振动水平差时,将所有侧翼通道一一估算。所有结果都是在由INEF4-ANR平台资助的“ Acoudeum”项目中生成的。

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