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A Modified Uniaxial Bouc-Wen Model for the Simulation of Transverse Lateral Pipe-Cohesionless Soil Interaction

机译:一种改进的单轴BOUC-WEN模型,用于横向管粘性土壤互动模拟

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This paper proposes a modified uniaxial Bouc-Wen model to evaluate reaction force-displacement backbone curve for transverse lateral pipe-cohesionless soil interaction. The model is capable of representing the nonlinearity and the smooth transition zone of the curve. Using unscented Kalman filter, the model parameter k that controls the smoothness of transition zone is derived, on the basis of results from high-fidelity validated finite element analyses, κ is larger in loose sand compared to that in dense sand, implying a smoother transition zone of the curve for loose sand. There is a slight change of κ with pipe burial depth in case of dense sand, while the change is clearer and larger in loose sand. The variation of κ is related to the "passive-wedge" and "plow-through" failure mode of soil. The model is subsequently implemented in a series of soil-pipe interaction configurations, and the reaction force-deformation curves are found in good agreement with experimental data.
机译:本文提出了一种改进的单轴BOUC-WE模型,以评估横向管粘性土壤相互作用的反应力 - 位移骨架曲线。该模型能够表示曲线的非线性和平滑过渡区。使用Unscented Kalman滤波器,根据高保真验证的有限元分析的结果,导出控制过渡区平滑度的模型参数k,与密集沙子相比,κ较大,κ较大,暗示更平滑的过渡松散沙子的曲线区域。在密集的沙子的情况下,带有管道埋深的κ有轻微的变化,而溶液的变化是更清晰且较大的砂。 κ的变化与“被动楔”和“犁过”的土壤失效模式有关。随后在一系列土管相互作用配置中实施该模型,并与实验数据吻合良好的反应力变形曲线。

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