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Total displacement of curved surface sliders under nonseismic and seismic actions: A parametric study

机译:非地震和地震作用下曲面滑块的总位移:参数研究

摘要

The re-centring capability is recognized as a fundamental function of any effective isolation system, not only because it is associated to small or negligible deformation at the end of the earthquake but rather because it prevents displacement build up that may limit the capability of the structure to withstand aftershocks and future earthquakes. The current Eurocode recommends to estimate the maximum total displacement of the isolated system as the superposition of the nonseismic offset displacement resulting from permanent actions, long-term deformations and thermal movements of the structure, and of the amplified seismic displacement induced by the design earthquake. For systems endowed with low re-centring capability, the estimation shall also account for the possible accrual of displacements during the lifetime of the structure. However, the aforementioned criteria have never been evaluated for curved surface sliders, which are characterized by an inherent nonlinear behaviour. The study aims at giving more insight into the matter by conducting a parametric study based on one-directional nonlinear response time history analyses and considering a variety of seismic scenarios. The first part of the study investigates the effect of a nonseismic displacement on the earthquake-induced displacement and formulates a criterion to evaluate the capability of curved surface sliders to provide a seismic response independent of the offset displacement. The response of the isolation system to natural sequences of earthquakes, where the offset displacement is the residual displacement from the previous shake, is addressed in the second part of the paper. The provisions of the Eurocode are eventually checked against the observed data.
机译:重新定心能力被认为是任何有效隔离系统的基本功能,不仅因为它与地震结束时的微小变形或微不足道的变形有关,而且还因为它防止了可能限制结构能力的位移累积承受余震和未来的地震。当前的欧洲规范建议将隔离系统的最大总位移估算为由结构的永久作用,长期变形和热运动以及设计地震引起的放大地震位移引起的非地震偏移位移的叠加。对于具有低重心能力的系统,估算还应考虑结构寿命期间可能产生的位移。但是,上述标准从未针对以固有非线性行为为特征的曲面滑块进行评估。该研究旨在通过基于单向非线性响应时间历史分析并考虑多种地震情况的参数研究,提供对该事件的更多见解。研究的第一部分调查了非地震位移对地震引起的位移的影响,并制定了一个标准来评估曲面滑块提供与位移无关的地震响应的能力。隔离系统对自然地震序列的响应,其中偏移位移是前一次地震的残余位移,将在本文的第二部分中讨论。最终,根据观察到的数据检查了欧洲法规的规定。

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