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首页> 外文期刊>Engineering Structures >SMART 2013: Experimental and numerical assessment of the dynamic behavior by shaking table tests of an asymmetrical reinforced concrete structure subjected to high intensity ground motions
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SMART 2013: Experimental and numerical assessment of the dynamic behavior by shaking table tests of an asymmetrical reinforced concrete structure subjected to high intensity ground motions

机译:SMART 2013:通过振动台试验对承受高强度地震动的非对称钢筋混凝土结构进行动力特性的实验和数值评估

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摘要

As part of a large research program launched and funded by the French Atomic Energy and Sustainable Energies Commission (CEA) and Electricite De France (EDF), partially supported by the International Atomic Energy Agency (IAEA) and entitled "Seismic design and best-estimate Methods Assessment for Reinforced concrete buildings subjected to Torsion and nonlinear effect (SMART)", a series of shaking table tests on 1/4/-scale 3-story reinforced concrete model characterized by a strong asymmetry has been carried out in July 2013. The seismic loading was composed of three test sequences having different peak ground accelerations (PGA): the design level signal (PGA equal to 0.2 g), the Northridge main shock signal (PGA equal to 1.78 g) and a Northridge aftershock (PGA equal to 0.33 g). In this paper, the main experimental results, compared with outputs from a numerical study carried out by CEA, are presented and discussed. The following conclusions were reached for each seismic test sequence: (i) only small nonlinearities appeared and both displacement and acceleration-based quantities were properly estimated by the model; (ii) the specimen exhibited moderate nonlinearities in case of PGA higher than 4 or 5 times the design PGA; displacements were numerically underestimated whereas maximum acceleration-based quantities were captured rather well; (Hi) the fact that no additional damage was monitored during this seismic sequence was pointed out only by the experimental measurements but also by the numerical outputs, leading to show that this aftershock signal did not induce any further damage. Given the aforementioned observations, it was possible to carry out a robustness analysis based upon two damage indicators: the eigenfrequency shift and the inter-story drift. Apart from the issues of the most meaningful robustness indicator and the choice of damage thresholds that came up, it is shown that the specimen can be qualified as being robust. (C) 2015 Elsevier Ltd. All rights reserved.
机译:作为法国原子能与可持续能源委员会(CEA)和法国电力(EDF)发起并资助的一项大型研究计划的一部分,该计划得到了国际原子能机构(IAEA)的部分支持,题为“地震设计和最佳估计” 2013年7月,对钢筋混凝土建筑物受扭和非线性效应(SMART)的方法进行了评估,并针对1/4 /比例的三层钢筋混凝土模型(其具有非对称性)进行了一系列振动台试验。地震荷载由三个具有不同峰值地面加速度(PGA)的测试序列组成:设计水平信号(PGA等于0.2 g),Northridge主震信号(PGA等于1.78 g)和Northridge余震(PGA等于0.33) G)。本文介绍并讨论了主要实验结果,并与CEA进行的数值研究结果进行了比较。对于每个地震测试序列,得出以下结论:(i)仅出现小的非线性,并且该模型正确估计了基于位移和加速度的量; (ii)如果PGA高于设计PGA的4或5倍,则样品表现出中等非线性;位移在数值上被低估了,而基于加速度的最大量被很好地捕获了; (嗨)这一事实表明,在地震序列中没有监测到额外的破坏,这一点不仅通过实验测量得到,而且还通过数值输出指出,从而表明该余震信号不会引起任何进一步的破坏。鉴于上述观察,有可能基于两个破坏指标进行稳健性分析:特征频率偏移和层间偏移。除了最有意义的稳健性指标和出现的损伤阈值的选择问题外,还表明标本可以被认为是稳健的。 (C)2015 Elsevier Ltd.保留所有权利。

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