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Seismic reliability-based design of hardening and softening structures isolated by double concave sliding devices

机译:基于双凹面滑动装置隔离的硬化和软化结构的基于地震可靠性的设计

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摘要

This study proposes seismic reliability-based design relationships in terms of behavior factors and displacement demands for softening and hardening structures equipped with double concave sliding bearings (i.e., DFPS). An equivalent 3dof system is adopted, that is characterized by a hardening or softening post-yield slope, representative of the superstructure response, and by velocity-dependent laws to model the frictional responses of the two surfaces of the DFPS. The yielding characteristics of the superstructures are defined for increasing behavior factors, provided by the codes, in compliance with the seismic hazard of L'Aquila (Italian site) and with the life safety limit state as provided by NTC18. Considering several natural ground motions and different elastic and inelastic structural properties under the hypothesis of modelling the friction coefficients of the two surfaces of the DFPS as random variables, incremental dynamic analyses are developed to assess the seismic fragility. From the convolution integral of the fragility curves with the seismic hazard curves related to L'Aquila (Italian site), assuming a lifetime of 50 years, the corresponding reliability curves are computed. Precisely, seismic reliability-based linear and multi-linear regressions relating the displacement ductility demand to the behavior factors for the softening and hardening superstructures together with seismic reliability-based design (SRBD) curves for the two surfaces of the double concave sliding bearings are provided as the design relationships.
机译:这项研究提出了基于行为可靠性和位移要求的基于地震可靠性的设计关系,以应对配备双凹面滑动轴承(即DFPS)的软化和硬化结构。采用等效的3dof系统,其特征在于屈服后的硬化变硬或变软(代表上层建筑的响应),并且通过依赖于速度的定律对DFPS的两个表面的摩擦响应进行建模。上层建筑的屈服特性是为增加行为因素而定义的,由规范提供,符合L'Aquila(意大利站点)的地震危险,并符合NTC18提供的生命安全极限状态。在将DFPS的两个表面的摩擦系数建模为随机变量的假设下,考虑了几种自然地震动以及不同的弹性和非弹性结构特性,开发了增量动力分析来评估地震脆性。从脆性曲线的卷积积分与与L'Aquila(意大利站点)有关的地震危险曲线的卷积积分,假设寿命为50年,则计算出相应的可靠性曲线。精确地提供了基于地震可靠性的线性和多线性回归,将位移延性需求与软化和硬化上部结构的行为因子相关联,并提供了双凹面滑动轴承两个表面的基于地震可靠性的设计(SRBD)曲线作为设计关系。

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