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An equivalent linear procedure for probabilistic displacement-based design of RC structures under earthquake

机译:地震下RC结构基于概率位移的等效线性过程

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Starting from an already existing gradient-based method for the performance-based seismic design (PBSD) of reinforced concrete (RC) structures, in which performance objectives are formulated in terms of maximum accepted mean annual frequency (MAF) of exceedance for multiple limit states, some improvements are presented. The method allows for the computation of the values of selected independent design variables (beams and column cross-sections and reinforcement) leading to the attainment or non-exceedance of pre-defined MAFs for multiple limit states. General geometric, as well as capacity design constraints are duly accounted for. The procedure is applied to a 15-storey plane frame building and validation is conducted against results in terms of drift profiles and MAF of exceedance, obtained by multiple stripe analysis with records selected to match conditional spectra. Results show that the method is suitable for PBSD of RC structures with explicit targets in terms of desired risk levels.
机译:从已经存在的基于梯度的基于梯度的方法开始,用于钢筋混凝土(RC)结构的基于性能的地震设计(PBSD),其中在最大接受的平均年频率(MAF)对多个限制状态的最大值方面配制了性能目标,提供了一些改进。该方法允许计算所选择的独立设计变量(光束和列横截面和增强)的值,导致对多个限制状态进行预定义的MAFS的达到或非超出预定的MAF。一般几何,以及容量设计约束正常占。该过程应用于15层平面帧建筑物建筑物建筑物建筑物建筑物,通过多次条纹分析与选择以匹配条件光谱的记录获得的漂移简档和MAF的结果进行验证。结果表明,该方法适用于RC结构的PBSD,在期望的风险水平方面具有明确的靶标。

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