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Seismic Fragility Assessment of RC Frame-Shear Wall Structures Designed According to the Current Chinese Seismic Design Code

机译:根据现行中国抗震设计规范设计的钢筋混凝土框架剪力墙结构的地震易损性评估

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After learning from several devastating earthquakes in China in recent years, stricter design criteria have been introduced in the current Chinese seismic design code. To investigate the reliability of the current seismic design code, seismic fragility analyses were performed for 45 10-story reinforced concrete (RC) frame-shear wall structures designed according to the current Chinese seismic design code by analytical methods, considering the uncertainty of earthquake ground motions. The plastic rotation at the ends of the structural component (or the total chord rotation) and the maximum inter-story drift were employed as damage identifiers to quantify the four performance levels, i.e., fully operational, operational, repairable and collapse prevention. Thus, seismic fragility curves corresponding to individual performance levels were developed on the basis of nonlinear time history analyses for the reference RC frame-shear wall structure. The influences of the site soil type, the seismic protection intensity and the performance index on the fragility curves were analyzed. The structural reliability of RC frame-shear wall structures was examined using the developed fragility curves. The results indicate that the seismic performance objectives of RC frame-shear wall structures designed according to the current Chinese seismic design code can be achieved with good reliability.
机译:在从近年来的几次中国地震中吸取教训后,现行的中国地震设计规范中引入了更严格的设计标准。为了研究当前抗震设计规范的可靠性,考虑到地震地面的不确定性,通过分析方法对根据现行中国抗震设计规范设计的45层10层钢筋混凝土框架剪力墙结构进行了脆性分析。动作。结构构件末端的塑性旋转(或总弦旋转)和最大层间位移被用作损伤识别符,以量化四个性能水平,即完全可操作,可操作,可修复和防止塌陷。因此,在参考RC框架-剪力墙结构的非线性时程分析的基础上,绘制了与各个性能水平相对应的地震脆性曲线。分析了场地土壤类型,抗震强度和性能指标对脆性曲线的影响。 RC框架-剪力墙结构的结构可靠性使用已开发的脆性曲线进行了检验。结果表明,按照现行的中国抗震设计规范设计的RC框架剪力墙结构的抗震性能指标可以达到较高的可靠性。

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