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Nonlinear behavior of slender RC columms (1). Numerical formulation

机译:细长RC柱的非线性行为(1)。数值公式

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摘要

This paper introduces an analytical model which can simulate the nonlinear behavior of slender reinforced concrete (RC) columns. The layer approach is adopted to determine the equilibrium conditions in a section and to consider the different material properties across the sectional depth effectively. The material nonlinearity including the cracking of concrete is taken into consideration, and geometric nonlinearity due to the P-DELTA effect is taken into account by using the initial stress matrix. In advance, the creep deformation of concrete is described in accordance with a first-order algorithm based on the expansion of a degenerate kernel of the compliance function. To verify the analytical results, correlation studies with previous numerical results and experimental data are conducted, and numerous parameter studies are followed to discuss the structural responses of slender RC columns according to the changes in design variables. Finally, the necessity for a rigorous nonlinear analysis is emphasized for more accurate prediction of the ultimate resisting capacity of slender RC columns.
机译:本文介绍了一种可以模拟细长钢筋混凝土(RC)柱的非线性行为的分析模型。采用层法确定截面的平衡条件,并有效地考虑整个截面深度的不同材料特性。考虑了包括混凝土开裂在内的材料非线性,并通过使用初始应力矩阵考虑了由于P-DELTA效应引起的几何非线性。预先,基于基于顺从函数的简并核的展开的一阶算法来描述混凝土的蠕变变形。为了验证分析结果,与以前的数值结果和实验数据进行了相关研究,并根据设计变量的变化进行了大量参数研究,讨论了细长RC柱的结构响应。最后,强调了进行严格非线性分析的必要性,以更准确地预测细长RC柱的极限抗力。

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