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首页> 外文期刊>Canadian Journal of Civil Engineering >Effects of full-height nonstructural partitions on modal properties of two nominally identical building floors
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Effects of full-height nonstructural partitions on modal properties of two nominally identical building floors

机译:全高非结构性隔断对两个名义上相同的建筑物地板的模态特性的影响

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摘要

This paper presents a combined experimental and numerical investigation of the modal properties of two fullscale and nominally identical steel–concrete composite floors. The floors were one above the other in the same fully operational multi-storey building. Both floors accommodated open-plan as well as partitioned offices. Multi-input-multi-output (MIMO) modal testing was employed to measure as-built modal properties of both floors. It was found that the two nominally identical floors had different modal characteristics, likely due to the different arrangement of partitions in the floor. It was also found that the measured modes on both floor levels experienced a considerable level of complexity, likely to be caused by nonproportional damping. Finite element (FE) models were developed in ANSYS for both floors using best engineering judgement and their features and properties were then tuned to match the measured counterparts. The tuning was done manually by trial-and-error and then automatically using sensitivity-based FE model updating procedure implemented in the FEMtools software. It was found that the initial and geometrically very detailed FE models, which did not feature any nonstructural components, underestimated the measured natural frequencies by up to a considerable 20%– 25%, depending on the floor level. When full-height plasterboard and glass partitions were explicitly modelled as vertical springs connected to the floor and grounded at the other end, the correlation between the experimental and FE results improved considerably.
机译:本文介绍了两种全尺寸和名义上相同的钢-混凝土复合地板的模态特性的组合实验和数值研究。在同一座可完全运作的多层建筑中,这些楼层彼此叠层。两层都可容纳开放式和分区办公室。采用多输入多输出(MIMO)模态测试来测量两个楼层的竣工模态特性。已经发现,两个名义上相同的地板具有不同的模态特征,这可能是由于地板中隔板的布置不同所致。还发现,在两个楼层上的测量模式都经历了相当大的复杂度,这很可能是由非比例阻尼引起的。在ANSYS中,使用最佳工程判断方法在两层楼中开发了有限元(FE)模型,然后对其特征和特性进行了调整以匹配所测量的对应物。通过反复试验手动进行调整,然后使用FEMtools软件中实现的基于灵敏度的有限元模型更新程序自动进行调整。结果发现,初始的和几何上非常详细的有限元模型,没有任何非结构性成分,低估了所测量的固有频率,取决于地板高度,其固有频率最多可低20%至25%。当将全高石膏板和玻璃隔板明确建模为连接到地板并在另一端接地的垂直弹簧时,实验结果与有限元结果之间的相关性得到了很大改善。

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