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首页> 外文期刊>Journal of structural engineering >Development of Hysteretic Model with Dynamic Effect and Deterioration for Seismic-Performance Analysis of Reinforced Concrete Structures
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Development of Hysteretic Model with Dynamic Effect and Deterioration for Seismic-Performance Analysis of Reinforced Concrete Structures

机译:钢筋混凝土结构地震性能分析动态效应及劣化滞后模型的发展

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In this paper, an innovative approach is developed to consider the impacts of dynamic effect and deterioration on the seismic performance analysis of reinforced concrete (RC) frame structures. Firstly, based on the dynamic loading test database of RC column specimens, the predicted models of dynamic modified coefficients (DMCs) are constructed to take into account the impacts of dynamic effect on the yielding and ultimate strength, effective stiffness, and ductility coefficient of RC columns. Secondly, a damage index-based hysteretic model is proposed to reflect both cyclic and in-cycle performance degradation of RC columns under cyclic dynamic loading. Finally, by employing the DMCs into the hysteretic model of RC members, the influences of dynamic effect and deterioration on the seismic behaviors of a RC frame structural model, which is a prototype structure suffering from severe seismic damage during the Yushu earthquake in China, are comprehensively investigated. The superiority of the proposed approach over the traditional method lies in that both the beneficial and adverse impacts of dynamic effect can be considered. Moreover, the effectiveness of the developed models is verified with the dynamic loading experimental observations. By comparing the numerical results of seismic responses between the rate-independent and rate-dependent models, it is found that the dynamic effect can exert dual influences on the structural seismic performance. For the frame models subjected to earthquakes with small intensities, the displacement response and damage degree can be reduced due to the strength and stiffness enhancement of structural members. As for the frame models under large intensity excitations, the structural damage is aggravated and the failure mechanism may be affected owing to the decreased ductility and intensified deterioration of RC members. To provide a more reliable seismic-performance assessment of RC structures, it is suggested that the combined influences of dynamic effect and deterioration should be given an adequate consideration in the further research works. (C) 2020 American Society of Civil Engineers.
机译:本文制定了一种创新方法,以考虑动态效应和恶化对钢筋混凝土(RC)框架结构的地震性能分析的影响。首先,基于RC列标本的动态加载测试数据库,构建了动态修改系数(DMC)的预测模型,以考虑动态效应对RC的屈服和极限强度,有效刚度和延展性系数的影响列。其次,提出了一种基于损伤的基于索引的滞后模型,以反映循环动态负载下RC柱的循环和循环性能下降。最后,通过使用DMC进入RC成员的滞后模型,动态效应和恶化对RC帧结构模型的地震行为的影响,这是中国玉树地震期间患有严重地震损伤的原型结构,是全面调查。在传统方法中提出的方法的优越性在于,可以考虑动态效果的有益和不利影响。此外,通过动态加载实验观察验证了开发模型的有效性。通过比较速率无关和速率依赖模型之间的地震反应的数值结果,发现动态效果可以对结构地震性能进行双重影响。对于具有小强度的地震的帧模型,由于结构构件的强度和刚度,可以减少位移响应和损坏程度。至于在大强度激发的框架模型下,由于降低的延展性和RC成员的延伸而受到影响,因此可能会影响故障机制。为了提供更可靠的RC结构的地震性能评估,建议在进一步的研究工作中充分考虑动态效应和恶化的合并影响。 (c)2020年美国土木工程师协会。

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