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Performance-based Seismic Design of Nonlinear Steel Structures Using a Novel Reliability Technique

机译:基于新型可靠性技术的非线性钢结构基于性能的抗震设计

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摘要

A unified performance-based seismic design procedure is proposed and successfully implemented in this dissertation. It provides an alternative to the currently used life safety design requirement. To successfully develop the concept, structures are represented by finite elements and excited by the seismic loading in time domain. To implement the performance-based seismic design concept, a novel reliability evaluation technique is proposed, integrating the finite element method, first order reliability method, the response surface method, and advanced factorial design concept, producing compounding beneficial effects.udFollowing the 1994 Northridge earthquake, several improved connections in steel buildings were proposed to eliminate brittle fractures in welds. Making connections more flexible was considered to be an attractive option. One type of flexible connection considered in this study is expected to be economical and improve the behavior of steel structures, making them more seismic load-tolerant. However, the partial rigidities of connections need to be considered. To consider rigidities of connections, the 4-parameters Richard model is incorporated in the finite element algorithm.udThe accuracy of the procedure is demonstrated by comparing it with respect to Monte Carlo Simulation. The efficiency and robustness are verified with the help of several steel structures of different height. Performances are defined in terms of immediate occupancy, life safety, and collapse prevention. The corresponding risks are evaluated by exciting steel structures designed by experts satisfying all post-Northridge seismic design requirements. In order to incorporate uncertainties in frequency contents of ground motions, the structures are excited by 20 earthquake time histories for each performance level, and the corresponding reliability indexes and probabilities of failure are estimated. Only hundreds of deterministic finite element analysis are required for extracting the corresponding risk. The superiority in extracting reliability information is demonstrated with respect to Monte Carlo Simulation, which requires thousands or millions of deterministic finite element analysis.udThe study confirms the benefits of multiple deterministic analyses suggested in recent design guidelines. The behavior of post-Northridge design is demonstrated to be superior to that of the pre-Northridge design, as expected. The performance criteria suggested by the Federal Emergency Management Agency appear to be reasonable and are expected to satisfy the intent of the performance-based design concept.udSeveral other advantages of the novel reliability technique are presented in terms of corresponding risk of steel structures excited by simulated ground motions. A broadband platform developed by the Southern California Earthquake Center is used for the artificial generation of time histories. Then, the structural risk is calculated using simulated ground motions.udDesigning a structure using multiple time histories, as suggested in recent design guidelines, is a step in the right direction. Based on the results and the observations documented in this dissertation, a robust, efficient, and accurate reliability technique is proposed, and its implementation potential for the performance-based seismic design of steel structures is demonstrated.
机译:本文提出了一种基于性能的统一抗震设计程序,并成功实现。它提供了当前使用的生命安全设计要求的替代方法。为了成功发展这一概念,结构以有限元表示,并在时域中受到地震荷载的激励。为了实施基于性能的抗震设计概念,提出了一种新颖的可靠性评估技术,该技术将有限元方法,一阶可靠性方法,响应面方法和先进的析因设计概念相结合,产生了复合的有益效果。 ud在1994年Northridge之后地震后,为改善焊接中的脆性断裂,提出了几种改进钢结构连接的建议。使连接更加灵活被认为是一种有吸引力的选择。预计本研究中考虑的一种柔性连接是经济的,并且可以改善钢结构的性能,使其更具抗震性。但是,需要考虑连接的部分刚性。为了考虑连接的刚性,将4参数Richard模型纳入了有限元算法。 ud通过与Monte Carlo Simulation比较,证明了该过程的准确性。借助于几种不同高度的钢结构,验证了效率和坚固性。表演是根据即时占用,生命安全和防倒塌来定义的。满足所有北岭后地震设计要求的专家设计的令人兴奋的钢结构,可以评估相应的风险。为了将地震动频率含量的不确定性纳入考虑范围,针对每个性能水平,通过20个地震时间历史对结构进行激励,并估算相应的可靠性指标和失效概率。提取相应风险仅需要数百个确定性有限元分析。相对于需要数以千计或数百万个确定性有限元分析的蒙特卡洛模拟,证明了提取可靠性信息的优越性。 ud该研究证实了最新设计指南中建议的多个确定性分析的好处。正如预期的那样,北岭后设计的行为被证明比北岭前设计的行为更好。联邦紧急事务管理局(Federal Emergency Management Agency)提出的性能标准似乎是合理的,并且有望满足基于性能的设计概念的意图。 ud就可靠性引起的钢结构的相应风险而言,新颖可靠性技术还具有其他优点。模拟地面运动。由南加州地震中心开发的宽带平台用于人工生成时间历史。然后,使用模拟的地面运动来计算结构风险。 ud如最近的设计指南中所建议的那样,使用多个时间历史来设计结构是朝着正确方向迈出的一步。根据本文的结果和观察结果,提出了一种鲁棒,高效,准确的可靠性技术,并证明了其在基于性能的钢结构抗震设计中的应用潜力。

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    Gaxiola Camacho Jose Ramon;

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  • 年度 2017
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