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Seismic Damage Evaluation of Concrete-Encased Steel Frame-Reinforced Concrete Core Tube Buildings Based on Dynamic Characteristics

机译:基于动态特性的混凝土钢型钢筋混凝土芯管建筑地震损伤评价

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To evaluate damage state and residual resistance of concrete-encased steel frame-reinforced concrete core tube buildings under earthquake actions, a criterion of damage assessment based on dynamic characteristics is proposed in this paper. Dynamic characterization experiments were conducted on a 10-story and 1/5 scaled building model using velocity sensors on each floor, and natural frequencies were obtained based on the measured data. Modal analysis was carried out using a nonlinear finite element program, and the simulation results of the dynamic characteristics agreed well with experimental ones. Then, the damage processes under different seismic wave inputs were revealed based on finite element analysis, and the max story drift angle was chosen to reflect the damage state and to quantify the degree of damage. A criterion of seismic damage assessment is proposed based on the relationship between the quantitative damage value and the dynamic characteristics, in which the higher order modes were considered. Moreover, influencing factors, including earthquake intensity and structural stiffness ratio, were analyzed, and the results indicated that the proposed damage index based on dynamic characteristics can account for the higher-order modes and provides an innovative approach to evaluate the seismic damage.
机译:在地震作用下评估混凝土钢框架钢筋混凝土芯管建筑物的损伤状态和剩余电阻,提出了基于动态特性的损伤评估标准。使用每层楼上的速度传感器在10层和1/5缩放的建筑模型上进行动态特征实验,并且基于测量数据获得自然频率。使用非线性有限元件进行模态分析,并且动态特性的仿真结果与实验结果很好。然后,基于有限元分析揭示了不同地震波输入下的损坏过程,选择最大故事漂移角来反映损坏状态并量化损坏程度。基于定量损伤值与动态特性之间的关系提出了地震损伤评估的标准,其中考虑了高阶模式。此外,分析了影响因素,包括地震强度和结构刚度比,结果表明,基于动态特性的拟议损害指数可以占高阶模式,并提供一种评估地震损伤的创新方法。

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