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Vibration behaviour of steel-timber composite floors, part (1): Experimental & numerical investigation

机译:钢木复合地板的振动特性,第(1)部分:实验和数值研究

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This paper is the first part of a comprehensive experimental and numerical study on the vibration behaviour of innovative steel-timber composite (STC) floors under service loading conditions. Due to the lighter weight and lower inherent damping of STC floors compared to conventional steel-concrete composite floors, vibration performance is a major serviceability concern that should be addressed to ensure that the dynamic characteristics of the system are within the range of human comfort. Extensive modal testing and numerical analysis were carried out on six STC beams and the acceleration response, natural frequencies, damping ratios and mode shapes were extracted. A 3D finite element (FE) model of the STC beams was generated and calibrated/updated by the Genetic Algorithm to minimise the difference between the experimentally measured and the numerically predicted natural frequencies, mode shapes and dynamic flexibility matrix. It is shown that the updated FE models can predict the vibration response of the idealised STC floors with reasonable accuracy. In Part 2 of the paper, the validated FE model in conjunction with the available guidelines in BS EN 1995-1-1 (EC5), AISC Design Guide 11 and the ECCS reports are utilised to assess the performance of STC floors subject to human-induced vibrations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文是在使用载荷条件下创新钢木复合材料(STC)地板振动行为的综合实验和数值研究的第一部分。由于与传统的钢混混凝土地板相比,STC地板的重量更轻且固有阻尼更低,因此振动性能是主要的可维护性问题,应确保该系统的动态特性在人类舒适度范围内。对6条STC梁进行了广泛的模态测试和数值分析,并提取了加速度响应,固有频率,阻尼比和振型。通过遗传算法生成并校准/更新了STC梁的3D有限元(FE)模型,以最大程度地减少实验测量的数值和数值预测的固有频率,振型和动态柔性矩阵之间的差异。结果表明,更新后的有限元模型可以合理地预测理想化STC地板的振动响应。在本文的第2部分中,经过验证的有限元模型与BS EN 1995-1-1(EC5)中的可用指南,AISC设计指南11和ECCS报告一起用于评估受人为干预的STC地板的性能。引起的振动。 (C)2019 Elsevier Ltd.保留所有权利。

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