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Numerical analysis of under-designed reinforced concrete beam-column joints under cyclic loading

机译:设计不足的钢筋混凝土梁柱节点在循环荷载作用下的数值分析

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摘要

In the present study, exterior beam-column sub-assemblage from a regular reinforced concrete (RC) building has been considered. Two different types of beam-column sub-assemblages from existing RC building have been considered, i.e., gravity load designed ('GLD'), and seismically designed but without any ductile detailing ('NonDuctile'). Hence, both the cases represent the under-designed structure at different time frame span before the introduction of ductile detailing. For designing 'NonDuctile' structure, Eurocode and Indian Standard were considered. Non-linear finite element (FE) program has been employed for analysing the sub-assemblages under cyclic loading. FE models were developed using quadratic concrete brick elements with embedded truss elements to represent reinforcements. It has been found that the results obtained from the numerical analysis are well corroborated with that of experimental results. Using the validated numerical models, it was proposed to correlate the energy dissipation from numerical analysis to that from experimental analysis. Numerical models would be helpful in practice to evaluate the seismic performance of the critical sub-assemblages prior to design decisions. Further, using the numerical studies, performance of the sub-assemblages with variation of axial load ratios (ratio is defined by applied axial load divided by axial strength) has been studied since many researchers have brought out inconsistent observations on role of axial load in changing strength and energy dissipation under cyclic load.
机译:在本研究中,已经考虑了常规钢筋混凝土(RC)建筑物的外部梁柱子组件。已经考虑了来自现有RC建筑物的两种不同类型的梁柱子组件,即重力荷载设计(GLD)和抗震设计,但没有任何延展性细节(``NonDuctile'')。因此,这两种情况都代表了在引入延性细部之前在不同时间范围内设计不足的结构。在设计“ NonDuctile”结构时,考虑了欧洲规范和印度标准。非线性有限元(FE)程序已被用于分析循环载荷下的子组件。有限元模型是使用带有嵌入桁架元素的二次方混凝土砖元素来表示钢筋的。已经发现,从数值分析获得的结果与实验结果得到了很好的证实。使用经过验证的数值模型,提出将数值分析的能量耗散与实验分析的能量耗散关联起来。数值模型在实践中有助于在设计决策之前评估关键子组件的抗震性能。此外,由于许多研究人员对轴向载荷在改变中的作用产生了不一致的观察结果,因此,通过数值研究,研究了子组件的性能随轴向载荷比率的变化(比率由施加的轴向载荷除以轴向强度来定义)。循环载荷下的强度和能量耗散。

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