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Damage identification of a 3D full scale steel-concrete composite structure with partial-strength joints at different pseudo-dynamic load levels

机译:不同伪动力载荷水平下具有部分强度接头的3D全尺寸钢-混凝土组合结构的损伤识别

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摘要

Partial-strength composite steel-concrete moment-resisting (MR) frame structures represent an open research field in seismic design from both a theoretical and an experimental standpoint. Among experimental techniques, vibration testing is a well-known and powerful technique for damage detection, localization and quantification, where actual modal parameters of a structure at different states can be determined from test data by using system identification methods. However, the identification of semi-rigid connections in framed structures is limited, and hence this paper focuses on a series of vibration experiments that were carried out on a realistic MR frame structure, following the application of pseudo-dynamic and quasi-static cyclic loadings at the European laboratory for structural assessment of the Joint Research Centre at Ispra, Italy, with the scope of understanding the structural behaviour and identifying changes in the dynamic response. From the forced vibration response, natural frequencies, damping ratios, modal displacements and rotations were extracted using the circle fitting technique. These modal parameters were used for local and global damage identification by updating a 3D finite element model of the intact structure. The identified results were then correlated with observations performed on the structure to understand further the underlying damage mechanisms. Finally, the latin hypercube sampling technique, a variant of the Monte Carlo method, was employed in order to study the sensitivity of the updated parameters of the 3D model to noise on the modal inputs.
机译:从理论和实验的角度来看,部分强度的复合钢-混凝土抗弯框架结构代表了抗震设计领域的一个开放研究领域。在实验技术中,振动测试是一种用于损伤检测,定位和量化的众所周知且功能强大的技术,其中可以使用系统识别方法从测试数据中确定结构在不同状态下的实际模态参数。但是,对框架结构中半刚性连接的识别是有限的,因此,本文重点研究了在真实的MR框架结构上进行的一系列振动实验,并遵循了拟动力和准静态循环载荷的应用。在意大利Ispra联合研究中心的欧洲结构评估实验室中,了解结构行为并确定动力响应的变化。从强迫振动响应中,使用圆拟合技术提取了固有频率,阻尼比,模态位移和旋转。通过更新完整结构的3D有限元模型,这些模态参数可用于局部和全局损坏识别。然后将鉴定出的结果与对该结构进行的观察相关联,以进一步了解潜在的破坏机理。最后,采用拉丁超立方体采样技术(蒙特卡罗方法的一种)来研究3D模型的更新参数对模态输入噪声的敏感性。

著录项

  • 来源
    《Earthquake Engineering & Structural Dynamics》 |2009年第10期|1219-1236|共18页
  • 作者单位

    Department of Structural and Mechanical Engineering, University of Trento, via Mesiano 77, 38100 Trento, Italy;

    Department of Structural and Mechanical Engineering, University of Trento, via Mesiano 77, 38100 Trento, Italy;

    Department of Structural and Mechanical Engineering, University of Trento, via Mesiano 77, 38100 Trento, Italy;

    Department of Aerospace Engineering, Queens Building, University of Bristol, Bristol BS8 ITR, U.K.;

    Department of Structural and Mechanical Engineering, University of Trento, via Mesiano 77, 38100 Trento, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    damage assessment; pseudo-dynamic tests; model updating; sensitivity analysis;

    机译:损害评估;拟动态测试;模型更新;敏感性分析;

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