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Investigation of the SHM-oriented model and dynamic characteristics of a super-tall building

机译:面向超高层建筑的SHM模型和动力特性研究

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摘要

Shanghai Tower is a 632-meter super high-rise building located in an area with wind and active earthquake. A sophisticated structural health monitoring (SHM) system consisting of more than 400 sensors has been built to carry out a long-term monitoring for its operational safety. In this paper, a reduced-order model including 31 elements was generated from a full model of this super tall building. An iterative regularized matrix method was proposed to tune the system parameters, making the dynamic characteristic of the reduced-order model be consistent with those in the full model. The updating reduced-order model can be regarded as a benchmark model for further analysis. A long-term monitoring for structural dynamic characteristics of Shanghai Tower under different construction stages was also investigated. The identified results, including natural frequency and damping ratio, were discussed. Based on the data collected from the SHM system, the dynamic characteristics of the whole structure was investigated Compared with the result of the finite element model, a good agreement can be observed. The result provides a valuable reference for examining the evolution of future dynamic characteristics of this super tall building.
机译:上海中心大厦是一栋632米的超高层建筑,位于风大,地震活跃的地区。已构建了一个由400多个传感器组成的复杂的结构健康监测(SHM)系统,以对其操作安全性进行长期监测。在本文中,从该超高层建筑的完整模型中生成了包含31个元素的降阶模型。提出了一种迭代正则化矩阵方法来调整系统参数,使降阶模型的动态特性与完整模型的动态特性保持一致。更新的降阶模型可以视为进一步分析的基准模型。对上海大厦不同施工阶段的结构动力特性进行了长期监测。讨论了确定的结果,包括固有频率和阻尼比。根据从SHM系统收集的数据,研究了整个结构的动力特性,与有限元模型的结果相比,可以观察到很好的一致性。该结果为研究该超高层建筑未来动力特性的演变提供了有价值的参考。

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