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An Analytical Research on Determination of Beam and Column Contribution to Plastic Energy Dissipation of RC Frames

机译:确定梁和柱对RC框架塑性耗能的分析研究

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摘要

Determination of capacities of structural members, both in terms of strength and deformation, and estimation of seismic demand are essential issues in earthquake-resistant design. In energy-based design and evaluation, both the structural capacity and the demand imposed by earthquake are considered in terms of energy and accordingly energy dissipation capacity of the structure is associated with seismic energy demand. Plastic energy dissipation of structures under monotonic lateral loading may be obtained by using the resultant pushover curves of nonlinear static analyses. However, the time variation of individual contribution of structural members to the dissipated plastic energy cannot be determined. In this study, the contribution of beam and column deformations to the plastic energy dissipated in multistory reinforced concrete (RC) frames is determined by using nonlinear time history (NLTH) analysis. It is found that rotational deformations of beams are dominant in plastic energy dissipation. Accordingly, some linear relations considering the contribution of dissipated plastic energy in beam plastic hinges to the total plastic energy dissipation of RC frames are derived. Pushover analysis of frames in conducted and the area under the resultant pushover curve is determined to satisfy the mean value of the maximum plastic energy dissipated in frames during the selected earthquakes. The interstory drift ratios are calculated and compared with the interstory drift ratios directly obtained from NLTH analyses. The results are evaluated and presented by graphs and tables.
机译:在抗震设计中,确定结构构件的强度和变形能力以及估算地震需求是必不可少的问题。在基于能量的设计和评估中,从能量的角度考虑了结构的承载能力和地震带来的需求,因此,结构的耗能能力与地震的能量需求相关。可以通过使用非线性静力分析的合成推挤曲线来获得结构在单调横向载荷下的塑性能耗散。但是,无法确定结构构件对耗散塑性能量的贡献的时间变化。在这项研究中,梁和柱的变形对多层钢筋混凝土框架的耗散塑性能量的贡献是通过非线性时程分析来确定的。发现梁的旋转变形在塑性能量耗散中占主导地位。因此,推导了一些线性关系,其中考虑了梁塑料铰链中耗散的塑性能量对RC框架总塑性能量耗散的影响。确定进行中的框架的推覆分析以及所产生的推覆曲线下的面积,以满足所选地震期间框架中耗散的最大塑性能量的平均值。计算层间漂移率,并将其与直接从NLTH分析获得的层间漂移率进行比较。评估结果并通过图形和表格呈现。

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