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An integrated earthquake impact assessment system.

机译:综合的地震影响评估系统。

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摘要

This dissertation presents a methodology for the refined, reliable, integrated and versatile assessment of the impact of earthquakes on civil infrastructure systems by using free-field and structural instrumentation as well as hybrid simulation. The methodology is presented through a seamlessly-integrated, transparent, transferable and extensible software platform, referred to as NEES Integrated Seismic Risk Assessment Framework (NISRAF). The software tool combines all necessary components in order to obtain the most reliable earthquake impact assessment results possible. The components are (i) hybrid simulation, (ii) free-field and (iii) structural sensor measurements, (iv) hazard characterization, (v) system identification-based model updating, (vi) hybrid fragility analysis and (vii) impact assessment software.;NISRAF has been built and demonstrated via applications to an actual test bed in the Los Angeles area. Based on an instrumented six-story steel moment resisting frame building and free-field station records, site response analysis was performed, and hazard characterization and surface ground motion records were generated for further use during the hybrid simulations and fragility analyses. Meanwhile, the finite element model was built, and the natural frequencies and mode shapes were identified using suitable algorithms. The numerical model was updated through a sensitivity-based model updating technique. Next, hybrid simulations---with the most critical component of the structural system tested in the laboratory and the remainders of the structure simulated analytically---were conducted within UI-SIMCOR and ZEUS-NL, both software platforms of the University of Illinois. The simulated results closely matched their measured counterparts. Fragility curves were derived using hybrid simulation results along with dispersions from research on similar structures from the literature. Impact assessment results using the generated hazard map and fragility curves correlated very well with field observations following the Northridge earthquake of 17 January 1994.;The novelty of the developed framework is primarily the improvement of every component of earthquake impact assessment and the integration of these components---most of which have not been deployed in such an application before---into a single versatile and extensible platform. To achieve seamless integration and to arrive at an operational and verified system, several components were used innovatively, tailored to perform the role required by NISRAF. The integrated feature brings the most advanced tools of earthquake hazard and structural reliability analyses into the context of societal requirement for accurate evaluation of the impact of earthquakes on the built environment.
机译:本文提出了一种通过使用自由场和结构仪器以及混合仿真对地震对民用基础设施系统的影响进行精细,可靠,综合和通用评估的方法。通过无缝集成,透明,可转移和可扩展的软件平台(称为NEES集成地震风险评估框架(NISRAF))来介绍该方法。该软件工具结合了所有必要的组件,以便获得最可靠的地震影响评估结果。这些组件包括(i)混合仿真,(ii)自由场和(iii)结构传感器测量,(iv)危害特征,(v)基于系统识别的模型更新,(vi)混合脆性分析和(vii)影响评估软件。NISRAF已构建并通过在洛杉矶地区的实际测试台上的应用进行了演示。基于仪器化的六层抗弯框架建筑和自由场站记录,进行了场地响应分析,并生成了危害特征和地表运动记录,以便在混合仿真和脆性分析中进一步使用。同时,建立了有限元模型,并采用合适的算法识别了固有频率和振型。通过基于灵敏度的模型更新技术更新了数值模型。接下来,在伊利诺伊大学的两个软件平台UI-SIMCOR和ZEUS-NL中进行了混合模拟-包括在实验室中测试的结构系统的最关键部分以及其余部分的分析模拟-。 。仿真结果与测量的结果非常匹配。使用混合模拟结果以及文献中对相似结构的研究得出的离散度得出了脆性曲线。使用生成的危害图和脆性曲线进行的影响评估结果与1994年1月17日诺斯里奇地震后的现场观察非常吻合;所开发框架的新颖性主要是改进了地震影响评估的各个组成部分并整合了这些组成部分---之前大多数都没有部署到这样的应用程序中---部署到一个通用的可扩展平台中。为了实现无缝集成并达到可操作和经过验证的系统,创新地使用了多个组件,这些组件经过定制以执行NISRAF所需的角色。集成的功能将最先进的地震危险性工具和结构可靠性分析带入了社会要求的范围内,以准确评估地震对建筑环境的影响。

著录项

  • 作者

    Lin, Sheng-Lin.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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