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Determination of earthquake safety of RC frame structures using an energy-based approach

机译:基于能量的方法确定钢筋混凝土框架结构的地震安全性

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摘要

An energy-based approach for determining earthquake safety of reinforced concrete frame structures is presented. The developed approach is based on comparison of plastic energy capacities of the structures with plastic energy demands obtained for selected earthquake records. Plastic energy capacities of the selected reinforced concrete frames are determined graphically by analyzing plastic hinge regions with the developed equations. Seven earthquake records are chosen to perform the nonlinear time history analyses. Earthquake plastic energy demands are determined from nonlinear time history analyses and hysteretic behavior of earthquakes is converted to monotonic behavior by using nonlinear moment-rotation relations of plastic hinges and plastic axial deformations in columns. Earthquake safety of selected reinforced concrete frames is assessed by using plastic energy capacity graphs and earthquake plastic energy demands. The plastic energy dissipation capacities of the frame structures are examined whether these capacities can withstand the plastic energy demands for selected earthquakes or not. The displacements correspond to the mean plastic energy demands are obtained quite close to the displacements determined by using the procedures given in different seismic design codes.
机译:提出了一种基于能量的钢筋混凝土框架结构地震安全性确定方法。所开发的方法是基于将结构的塑性能容量与针对选定地震记录获得的塑性能需求进行比较。通过用已开发的方程分析塑料铰链区域,以图形方式确定所选钢筋混凝土框架的塑性能。选择七个地震记录以执行非线性时程分析。通过非线性时程分析确定地震塑性能量需求,并通过使用塑性铰链的非线性力矩-旋转关系和圆柱中的塑性轴向变形将地震的滞后行为转换为单调行为。所选钢筋混凝土框架的地震安全性通过使用塑性能图和地震塑性能需求进行评估。检查框架结构的塑性能量消散能力,这些能力是否可以承受选定地震的塑性能量需求。获得的位移对应于平均塑性能量需求,该位移与使用不同抗震设计规范中给出的程序确定的位移非常接近。

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