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Nonlinear analysis of single reinforced concrete piles subjected to lateral loading

机译:单钢筋混凝土桩侧向受力的非线性分析

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This paper proposes a method for the nonlinear analysis of laterally loaded single reinforced concrete piles based on the beam-on-nonlinear-Winkler-foundation approach. A nonlinear fiber beam-column element is used to model the nonlinear behavior of a pile. The pile is divided into a series of segments, of which the cross section is assumed to be plane and normal to the longitudinal axis. The internal force of a segment is derived by integrating the nonlinear stress-strain relationships of all steel and concrete fibers within the cross section of the segment. The substructure technique is introduced to calculate the stiffness matrix of the segments. The nonlinear behavior of soils surrounding the pile is characterized by a modified strain wedge model. The results show that (1) the predicted results using the proposed method are consistent with the measurements for all three full-scale tested piles, and (2) updating the neutral axis of segments has a significant effect on the calculated lateral deflection; however, it has a slight effect on the calculated bending moment. Moreover, an empirical equation is derived from the numerical analyses for estimating the cracked flexural rigidity of bored piles subjected to lateral loading.
机译:提出了一种基于梁-非线性-Winkler-地基法的侧向单钢筋混凝土桩非线性分析方法。非线性纤维梁柱单元用于建模桩的非线性行为。将该桩分为一系列段,假定这些段的横截面为平面并垂直于纵轴。通过将所有钢纤维和混凝土纤维的非线性应力-应变关系积分到分段的横截面中,可以得出分段的内力。引入了子结构技术来计算分段的刚度矩阵。修改后的应变楔模型描述了桩周围土体的非线性行为。结果表明:(1)所提方法的预测结果与三个全尺寸试验桩的测量结果一致;(2)更新线段的中性轴对计算的侧向挠度有显着影响;但是,它对计算的弯矩有轻微的影响。此外,从数值分析中得出了一个经验方程,用于估算承受侧向荷载的钻孔桩的开裂抗弯刚度。

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