基于试验数据标定的RC墩柱弯剪行为模拟方法

SIMULATION METHOD FOR FLEXURE-SHEAR BEHAVIOUR OF RC BRIDGE COLUMNS CALIBRATED USING TEST DATA

  • 摘要: 为实现地震下钢筋混凝土(RC)墩柱不同破坏模式识别及弯剪行为的准确模拟,须对墩柱剪切弹簧本构模型进行准确表征,但剪切弹簧本构参数中变形参数的确定方法仍不明确。为此,本文提出了基于RC墩柱拟静力试验数据标定的剪切弹簧本构确定方法,重点解决从弯剪变形中提取剪切变形分量的问题,进一步通过回归分析建立关键变形参数的拟合公式,从而实现对墩柱弯剪、纯剪行为的准确模拟。基于矩形截面RC墩柱拟静力试验的验证结果表明,所提出的模拟方法可基于强度判据预测墩柱破坏模式,建立的变形参数计算公式具有较高的拟合精度。

     

    Abstract: To accurately simulate the flexure-shear behavior and identify the failure modes of reinforced concrete (RC) bridge columns, it is essential to characterize the shear spring constitutive model. However, the determination of deformation parameters involved in this model remains unclear. To address this issue, a method for determining the shear spring constitutive, calibrated from quasi-static test data of RC columns, is proposed. The method focuses on extracting the shear deformation component from the overall flexure-shear deformation and employs regression analysis to establish fitting formulas for key deformation parameters. On this basis, accurate simulations of both flexure-shear and pure shear behaviors of RC columns are achieved. Validation against quasi-static test results of rectangular cross-section RC columns demonstrates that the proposed modeling approach can predict failure modes based on strength criteria, and the derived deformation parameter formulas exhibit high fitting accuracy.

     

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