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Fiber-based damage analysis of reinforced concrete bridge piers

机译:钢筋混凝土桥墩的纤维损伤分析

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摘要

A fiber beam-column element is adopted to simulate the damage development process of reinforced concrete (RC) bridge piers under quasi-static and earthquake loadings considering global buckling and low-cycle fatigue of longitudinal bars. The tensile strain and low-cycle fatigue are used to represent the damage to longitudinal bars while the compression strain is adopted to calculate the damage to the cover concrete. A section damage index is proposed based on the material damage definition and bridge performance assessment. A set of circular RC bridge piers tested under different uniaxial quasi-static loading regimes are adopted to verify the reliability of the fiber beam-column element and the proposed damage model. Square RC columns subjected to different uniaxial and biaxial quasi-static loadings are used to verify the applicable scope of the fiber element and the damage index in biaxial quasi-static loading. In addition, a series of shaking table model tests on square, rectangular and circular piers subjected to bilateral earthquake ground motions are simulated to further verify the versatility of this model. The results show that, the fiber beam-column element can simulate RC columns/ piers with different sections and loading regimes with good accuracy. The damage index proposed in this paper is compared against experimental results and other damage indices and it is found that the proposed index can reflect the damage state at any stage and the gradual accumulation of damage in RC columns/piers more convincingly thin most other indices available in literature.
机译:考虑到纵筋的整体屈曲和低周疲劳,采用纤维梁柱单元模拟钢筋混凝土桥墩在准静态和地震荷载作用下的损伤发展过程。拉伸应变和低周疲劳是用来表示对纵向钢筋的损伤,而压缩应力是用来计算对覆盖混凝土的损伤。根据材料损伤定义和桥梁性能评估,提出断面损伤指标。采用一组在不同的单轴准静态载荷下测试的圆形RC桥墩,以验证纤维梁柱单元的可靠性和所提出的损伤模型。使用方形RC柱承受不同的单轴和双轴准静态载荷,以验证纤维元件的适用范围和双轴准静态载荷下的损伤指数。另外,对经受双向地震地面运动的方形,矩形和圆形墩的一系列振动台模型试验进行了仿真,以进一步验证该模型的通用性。结果表明,该纤维梁柱单元能够较好地模拟不同截面和加载方式的RC柱/墩。将本文提出的损伤指数与实验结果和其他损伤指数进行比较,发现该提议的指数可以反映任何阶段的损伤状态,并且钢筋混凝土柱/码头中损伤的逐步积累更令人信服,其他大多数可用指标也较薄在文学中。

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