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Energy based procedure to obtain target displacement of reinforced concrete structures

机译:基于能量的过程获得钢筋混凝土结构的目标位移

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摘要

Performance-based seismic design allows a structure to develop inelastic response during earthquakes. This modern seismic design requires more clearly defined levels of inelastic response. The ultimate deformation of a structure without total collapse (target displacement) is used to obtain the inelastic deformation capacity (inelastic performance). The inelastic performance of a structure indicates its performance under excitation. In this study, a new energy-based method to obtain the target displacement for reinforced concrete frames under cyclic loading is proposed. Concrete structures were analyzed using nonlinear static (pushover) analysis and cyclic loading. Failure of structures under cyclic loading was controlled and the new method was tested to obtain target displacement, In this method, the capacity energy absorption of the structures for both pushover and cyclic analyses were considered to be equal. The results were compared with FEMA-356, which confirmed the accuracy of the proposed method.
机译:基于性能的抗震设计可使结构在地震过程中产生非弹性响应。这种现代的抗震设计需要更清晰地定义非弹性响应水平。没有完全坍塌(目标位移)的结构的最终变形用于获得非弹性变形能力(非弹性性能)。结构的非弹性性能表明其在激发下的性能。在这项研究中,提出了一种基于能量的新方法来获得循环荷载下钢筋混凝土框架的目标位移。使用非线性静力(推力)分析和循环荷载分析混凝土结构。控制了结构在循环荷载作用下的破坏,并测试了新方法以获得目标位移。在该方法中,推力分析和循环分析的结构的能量吸收能力均相等。将结果与FEMA-356进行比较,证实了该方法的准确性。

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