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SMART 2013: OVERVIEW AND LESSONS LEARNT FROM THE INTERNATIONAL BENCHMARK

机译:SMART 2013:从国际基准中学到的概述和经验教训

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This paper aims at giving an overview of the main findings and a summary of the results obtained within the framework of the International Benchmark SMART 2013, jointly organized by the CEA, EDF under the supervision of the IAEA. The benchmark, devoted to the Seismic design and best-estimate Methods Assessment for Reinforced concrete buildings subjected to Torsion and nonlinear effect, was split into four stages. The first stage allowed characterizing the nonlinear constitutive laws used in the best-estimate approaches. The second stage aimed at calibrating the numerical models. As for the third stage, it was devoted to blind nonlinear dynamic computations when a RC mock-up, representing a 1:4 scaled part of a typical nuclear electrical building, is subjected to strong input ground motions. In the last stage, the influence of both the material nonlinearities and the methodologies used to compute the fragility curves were analysed. From the analysis of the results obtained by all the participants, the following conclusions have been drawn: (i) significant improvements have been made on the way of controlling the boundary conditions when simulating high intensity shaking table tests involving a complex RC specimen, (ii) the numerical models were able to capture the peak frequency shifts, (iii) within the framework of the considered seismic scenario, the aftershock did not lead to additional damage, (iv) a satisfactory level of available seismic margin is confirmed with respect to the design of such building. Finally, it appears that SMART 2013 research program has succeeded not only in showing the robustness of a complex nuclear RC structure designed according to the current French practices but also in assessing the improvements made for in terms of best-estimate approaches and description of uncertainties when dealing with probabilistic vulnerability analysis.
机译:本文旨在概述主要研究结果,并总结由CEA,EDF在国际原子能机构(IAEA)的监督下联合举办的2013年国际基准SMART框架内获得的结果。该基准分为四个阶段,该基准专门用于受扭和非线性作用的钢筋混凝土建筑物的抗震设计和最佳估计方法评估。第一阶段允许表征最佳估计方法中使用的非线性本构定律。第二阶段旨在校准数值模型。至于第三阶段,当RC模型(代表典型核电建筑的1:4比例部分)经受强烈的输入地震动时,它专门用于盲非线性动态计算。在最后阶段,分析了材料非线性和用于计算脆性曲线的方法的影响。通过对所有参与者的结果进行分析,得出以下结论:(i)在模拟涉及复杂RC试样的高强度振动台试验时,在控制边界条件的方式上已取得了显着改善,(ii )数值模型能够捕获峰值频移,(iii)在考虑的地震场景的框架内,余震未导致额外的破坏,(iv)相对于这样的建筑物的设计。最后,看来SMART 2013研究计划不仅成功展示了根据法国目前的做法设计的复杂核RC结构的鲁棒性,而且还评估了在最佳估计方法和不确定性描述方面做出的改进处理概率漏洞分析。

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