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Vibration properties of a timber floor assessed in laboratory and during building construction

机译:在实验室和建筑施工期间评估的木地板的振动特性

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In the present work the change in natural frequencies, damping and mode shapes of a prefabricated timber floor element have been investigated when it was integrated into a building structure. The timber floor element was first subjected to modal testing in laboratory with ungrounded and simply supported boundary conditions, and then in situ at different stages of building construction. The first five natural frequencies, damping ratios and mode shapes of the floor element and the entire floor were extracted and analysed. It may be concluded that the major change in natural frequencies occur as the floor element is coupled to the adjacent elements and when partitions are built in the studied room, the largest effect is on those modes of vibration that largely are constrained in their movement. The in situ conditions have a great influence on the damping, which depends on the damping characteristics of the supports, but also on the fact that the floor is integrated into the building and interacts with it. There is a slight increase of damping in the floor over the different construction stages and the damping values seem to decrease with ascending mode order.
机译:在目前的工作中,已经研究了预制木地板元件在集成到建筑结构中后的固有频率,阻尼和振型的变化。首先在不接地且简单支撑的边界条件下对木地板元件进行实验室模态测试,然后在建筑施工的不同阶段进行原位测试。提取并分析了地板元件和整个地板的前五个固有频率,阻尼比和振型。可以得出结论,固有频率的主要变化发生在地板元件耦合到相邻元件的过程中,而当在研究室中建造隔板时,最大的影响是对那些在很大程度上受到其移动限制的振动模式。现场条件对阻尼有很大的影响,这取决于支撑件的阻尼特性,还取决于地板已集成到建筑物中并与其相互作用的事实。在不同的施工阶段中,地板的阻尼略有增加,并且阻尼值似乎随着模式阶数的增加而减小。

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