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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Alternative reliability-based methodology for evaluation of structures excited by earthquakes
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Alternative reliability-based methodology for evaluation of structures excited by earthquakes

机译:基于替代可靠性的基于可靠性的方法,用于评估地震激发的结构

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摘要

In this paper, an alternative reliability-based methodology is developed and implemented on the safety evaluation of structures subjected to seismic loading. To effectively elaborate the approach, structures are represented by finite elements and seismic loading is applied in time domain. The accuracy of the proposed reliability-based methodology is verified using Monte Carlo Simulation. It is confirmed that the presented approach provides adequate accuracy in calculating structural reliability. The efficiency and robustness in problems related to performance-based seismic design are verified. A structure designed by experts satisfying all post-Northridge seismic design requirements is studied. Rigidities related to beam-to-column connections are incorporated. The structure is excited by three suites of ground motions representing three performance levels: immediate occupancy, life safety, and collapse prevention. Using this methodology, it is demonstrated that only hundreds of deterministic finite element analyses are required for extracting reliability information. Several advantages are documented with respect to Monte Carlo Simulation. To showcase an applicability extension of the proposed reliability-based methodology, structural risk is calculated using simulated ground motions generated via the broadband platform developed by the Southern California Earthquake Center. It is validated the accuracy of the broadband platform in terms of structural reliability. Based on the results documented in this paper, a very solid, sound, and precise reliability-based methodology is proved to be acceptable for safety evaluation of structures excited by seismic loading.
机译:在本文中,开发了一种基于可靠性的方法,并在对遭受地震载荷进行的结构的安全性评估时实施和实施。为了有效地制定这种方法,结构由有限元表示,并且在时域中施加地震载荷。使用Monte Carlo仿真来验证所提出的基于可靠性的方法的准确性。证实,本方法在计算结构可靠性方面提供了足够的准确性。验证了与性能的地震设计相关的效率和稳健性。研究了一项符合诺伦敦邮政地震设计要求的专家设计的结构。融合了与梁到列连接相关的刚性。该结构由三个地面运动套装兴奋,代表三个性能水平:立即占用,生命安全和防塌方。使用该方法,证明仅需要数百个确定性有限元分析来提取可靠性信息。关于Monte Carlo仿真记录了几个优点。为了展示所提出的基于可靠性的方法的适用性延伸,使用通过南加州地震中心开发的宽带平台产生的模拟地面运动来计算结构风险。在结构可靠性方面验证了宽带平台的准确性。基于本文记载的结果,证明了一种非常坚固,声音和精确的可靠性的方法是可以接受的,以便对地震载荷激发的结构的安全评估。

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