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Dynamic characteristic analysis and shaking table test for a curved surface isolated structure

机译:曲面隔震结构的动力特性分析和振动台试验

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摘要

To reduce the displacement of an isolation layer, an innovative curved surface isolated structure (CSIS) system was put forward by using the curved surface characteristics of the isolation layer and the weight of the structure. Firstly, a simplified analysis model with multiple isolators considering the rotation of the upper structure around the center of curvature of the isolation layer and the oscillation around the center of the isolation layer was established. Subsequently, two CSIS models, with 4 degrees inclined isolators and 8 degrees inclined isolators, separately, were produced and a shaking table test was conducted. For comparison purpose, a normal isolated structure (NIS) model and a non-isolated structure (NS) model were also tested. The dynamic characteristics, acceleration and displacement responses of different models are compared and discussed. Finally, finite element models of the CSIS were established by using the software ABAQUS and the numerical simulation results were compared with the test results. The results show that the displacement responses of a CSIS are reduced and the CSIS can return to the initial position faster than the NIS; the acceleration response of a CSIS is slightly increased relative to the NIS, but significantly reduced compared to the NS; the acceleration time-history curves of each floor and the displacement time-history curves of the isolation layer for numerical simulation results show good agreement with experimental data.
机译:为了减少隔离层的位移,利用隔离层的曲面特征和结构的重量,提出了一种创新的曲面隔离结构(CSIS)系统。首先,建立了一个具有多个隔离器的简化分析模型,其中考虑了上部结构围绕隔离层曲率中心的旋转以及围绕隔离层中心的振荡。随后,制作了分别具有4度倾斜隔离器和8度倾斜隔离器的两个CSIS模型,并进行了振动台测试。为了进行比较,还测试了正常隔离结构(NIS)模型和非隔离结构(NS)模型。比较和讨论了不同模型的动力特性,加速度和位移响应。最后,使用ABAQUS软件建立了CSIS的有限元模型,并将数值模拟结果与测试结果进行了比较。结果表明,与SIS相比,CSIS的位移响应减小,并且CSIS可以更快返回初始位置。与NIS相比,CSIS的加速响应略有增加,但与NS相比,显着降低。数值模拟结果的各层加速度时程曲线和隔离层位移时程曲线与实验数据吻合良好。

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