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eismic reliability-based robustness assessment of three-dimensional reinforced concrete systems equipped with single-concave sliding devices

机译:基于单凹面滑动装置的三维钢筋混凝土系统基于地震可靠性的稳健性评估

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The aim of the study consists of evaluating the seismic robustness of a three-dimensional (3D) reinforced concrete (r.c.) structure equipped with single-concave friction pendulum system (FPS) devices by estimating the seismic reliability in its design life (50 years) of different models related to different malfunction scenarios of the seismic isolators. Among the uncertainties, the elastic response pseudo-acceleration corresponding to the isolated period is assumed as the relevant random variable and, by means of the Latin Hypercube Sampling technique, the input data have been defined in order to develop 3D inelastic time-history analyses. In this way, bivariate structural performance curves at each level of the r.c. structural system as well as seismic reliability based design abacuses for the FP devices have been computed and compared to evaluate the robustness of the r.c. system considering different models related to the different failure scenarios analysed. Contextually, the seismic robustness of the abovementioned r.c. structural system has also been examined by considering both a configuration equipped with beams connecting the substructure columns and a configuration without these connecting beams in order to demonstrate their effectiveness in improving the seismic robustness in the scenario of a malfunction of a seismic device and provide very useful design recommendations for base-isolated structures equipped with FPS.
机译:该研究的目的在于通过评估设计寿命(50年)中的地震可靠性来评估配备单凹面摩擦摆系统(FPS)的三维(3D)钢筋混凝土(rc)结构的抗震性。与地震隔离器不同故障场景相关的不同模型在不确定性中,将与孤立时段相对应的弹性响应伪加速度假定为相关随机变量,并通过Latin Hypercube Sampling技术定义了输入数据,以便进行3D非弹性时程分析。通过这种方式,在r.c的每个级别上的双变量结构性能曲线。计算并比较了FP设备的结构系统以及基于地震可靠性的设计算盘,以评估RC的鲁棒性。系统考虑了与不同故障场景相关的不同模型。就上下文而言,上述RC的抗震性还通过考虑配备有连接下部结构柱的梁的配置和不具有这些连接梁的配置来检查结构系统,以证明在地震设备发生故障的情况下其在提高抗震性方面的有效性,并且非常有用配备FPS的基础隔震结构的设计建议。

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