首页> 外文期刊>Journal of Constructional Steel Research >Damage analysis of a steel-concrete composite frame by finite element model updating
【24h】

Damage analysis of a steel-concrete composite frame by finite element model updating

机译:钢-混凝土组合框架有限元模型更新分析

获取原文
获取原文并翻译 | 示例
       

摘要

In the last two decades, many studies have reported the effectiveness of Experimental Modal Analysis and Finite Element Model Updating in mechanical and aerospace engineering, where they represent useful tools for Structural Health recognition and can provide an information base for detection, assessment and quantification of structural damage due to exercise actions and exceptional events.rnThe applications of Damage Detection techniques to civil constructions left some still not well clarified points, due to the great variety of structural typologies, material properties, boundary conditions and possible damage patterns, as in the case of seismic damage.rnIn order to design post-earthquake rehabilitation interventions, in fact a careful knowledge of the damage distribution and residual structural capacity is obviously needed and this can be very expensive and time consuming. However, the application of vibration based damage identification techniques to high ductile structures designed according to seismic capacity approach can improve the feasibility, reliability and efficiency of these methods.rnIn the present study, Finite Element Model Updating procedures based on vibration measurements were used to detect, assess and quantify the structural damage of a high ductile steel-concrete composite frame subjected to increasing seismic damage by means of pseudo dynamic and cyclic test at the Joint Research Centre (Ispra, Italy). The updating process, repeated for three damage levels, has been applied to different finite element structural models (addressing different modelling strategies), allowing a comprehensive description and quantification of the progressive degradation of beam-to-column joints, devoted to dissipate the seismic energy by design.
机译:在过去的二十年中,许多研究报告了实验模态分析和有限元模型更新在机械和航空工程中的有效性,它们代表了结构健康识别的有用工具,可以为结构的检测,评估和定量提供信息基础由于运动行为和异常事件而造成的损坏。rn由于结构类型,材料特性,边界条件和可能的损坏方式多种多样,因此将损坏检测技术应用于民用建筑的问题还没有得到明确阐明。为了设计震后修复干预措施,实际上显然需要仔细了解破坏的分布和剩余的结构承载力,这可能是非常昂贵和耗时的。然而,基于振动的损伤识别技术在根据抗震能力设计的高延性结构中的应用可以提高这些方法的可行性,可靠性和效率。rn在本研究中,基于振动测量的有限元模型更新程序被用于检测,通过联合研究中心(意大利伊斯普拉)的拟动力和循环试验,评估和量化了承受延性破坏的高延性钢-混凝土复合框架的结构破坏。针对三个损伤级别重复进行的更新过程已应用于不同的有限元结构模型(解决了不同的建模策略),从而可以对梁至柱节点的逐渐退化进行全面描述和量化,从而专门用于耗散地震能量通过设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号