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Nonlinear behavior of slender RC columms (2). Introduction of design formula

机译:细长RC柱的非线性行为(2)。设计公式介绍

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In this paper, a simple design formula to predict the resisting capacity of slender reinforced concrete (RC) columns is introduced. Using the proposed numerical model in the companion paper, nonlinear time-dependent analyses of slender RC columns that consider the creep deformation of concrete and the P-DELTA effect are conducted to determine their ultimate resisting capacity according to the variation of design variables. On the basis of the numerical analysis results obtained, the resisting capacity reduction factors, which represent the reduction rates of the resisting capacity in a long column corresponding to a short column on a P-M interaction diagram, are determined. In addition, the relationships between the resisting capacity reduction factors and design variables are established from regression and used to determine the ultimate resisting capacity of slender RC columns without any rigorous numerical analysis. The ultimate resisting capacities calculated from the regression formula are compared with those constructed from rigorous nonlinear time-dependent analyses and from the ACI formula with the objective of establishing the relative efficiencies of the proposed formula.
机译:本文介绍了一种预测细长钢筋混凝土柱抗力的简单设计公式。使用随附论文中提出的数值模型,对考虑混凝土蠕变变形和P-DELTA效应的细长RC柱进行非线性时变分析,以根据设计变量的变化确定其最终抗力。基于获得的数值分析结果,确定代表在P-M相互作用图上对应于短柱的长柱中的电阻容量的减小率的电阻减小率。此外,还通过回归建立了抗力减小因子与设计变量之间的关系,并将其用于确定细长RC柱的极限抗力,而无需进行任何严格的数值分析。将通过回归公式计算出的极限抗力与通过严格的非线性时变分析和ACI公式构建的极限抗力进行比较,目的是确定所提出公式的相对效率。

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