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Shaking table test and numerical simulation of eddy-current tuned mass damper for structural seismic control considering soil-structure interaction

机译:考虑土壤 - 结构相互作用的结构地震控制涡流调谐质量阻尼器的振动台测试与数值模拟

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摘要

This paper firstly investigates the vibration control performance of eddy current tuned mass damper (ECTMD) on structure considering soil-structure interaction (SSI) subjected to seismic loads, and shaking table tests of a six-story steel frame model equipped with ECTMD in SSI system are conducted. By comparison with the undamped TMD, the effectiveness of eddy current damping is also studied. The experimental results in the seismic cases clearly reveal that ECTMD mitigates the maximum displacement response both in rigid base and SSI situations, but it may amplify the peak floor acceleration considering SSI effects. On the whole, SSI decreases the mitigation effects of ECTMD on the structural maximum response, and eddy current damping can improve TMD's control performance, especially in SSI system. Furthermore, a three-dimensional finite element model on the shaking table tests is established. The numerical model utilizes two different analysis procedures - equivalent linear method and bounding surface plasticity model, to simulate the nonlinear behavior of soil, and the concept of an equivalent eddy current damping is used to simulate ECTMD. A comparison of experimental and simulated results shows that the proposed model can accurately estimate the dynamic response of structure equipped with ECTMD in SSI system under earthquake excitations.
机译:本文首先研究了考虑抗震载荷(SSI)的涡流调谐质量阻尼器(ECTMD)对结构的振动控制性能,以及在SSI系统中配备ECTMD的六层钢框架模型的振动台测试进行。通过与稳定的TMD进行比较,还研究了涡流阻尼的有效性。抗震病例的实验结果清楚地揭示了ECTMD在刚性基础和SSI情况下减轻了最大位移响应,但考虑到SSI效应,它可以放大峰值地板加速度。总的来说,SSI降低了ECTMD对结构最大响应的缓解效果,涡流阻尼可以提高TMD的控制性能,尤其是在SSI系统中。此外,建立了摇动台测试上的三维有限元模型。数值模型利用两种不同的分析程序 - 等效的线性方法和边界表面塑性模型,模拟土壤的非线性行为,等效涡流阻尼的概念用于模拟EECT。实验和模拟结果的比较表明,所提出的模型可以准确估计地震激励下SSI系统中配备ECTMD结构的动态响应。

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