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STRUCTURAL PERFORMANCE OF BURIED STEEL PIPELINES CROSSING STRIKE-SLIP FAULTS

机译:穿越走滑断层的钢制管道的结构性能

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The performance of pipelines subjected to permanent strike-slip fault movement is investigated by combining detailed numerical simulations and closed-form solutions. A closed-form solution for the force-displacement relationship of a buried pipeline subjected to tension is presented and used in the form of nonlinear springs at the two ends of the pipeline in a refined finite element model, allowing an efficient nonlinear analysis of the pipe-soil system at large strike-slip fault movements. The analysis accounts for large deformations, inelastic material behaviour of the pipeline and the surrounding soil, as well as contact and friction conditions on the soil-pipe interface. Appropriate performance criteria of the steel pipeline are adopted and monitored throughout the analysis. It is shown that the end conditions of the pipeline have a significant influence on pipeline performance. For a strike-slip fault normal to the pipeline axis, local buckling occurs at relatively small fault displacements. As the angle between the fault normal and the pipeline axis increases, local buckling can be avoided due to longitudinal stretching, but the pipeline may fail due to excessive axial tensile strains or cross sectional flattening.
机译:通过结合详细的数值模拟和闭式解,研究了承受永久走滑断层运动的管道的性能。提出了一种用于封闭管道承受拉力的位移关系的封闭形式的解决方案,并以非线性弹簧的形式在改进的有限元模型中使用了管道两端的非线性弹簧,从而可以对管道进行有效的非线性分析滑移断层运动大的土壤系统。该分析说明了大变形,管道和周围土壤的非弹性材料行为,以及土壤-管道界面上的接触和摩擦条件。在整个分析过程中,均采用并监视了钢管的适当性能标准。结果表明,管道的末端条件对管道的性能有很大的影响。对于垂直于管道轴线的走滑断层,局部屈曲发生在相对较小的断层位移处。随着断层法线与管道轴线之间的角度增加,可以避免由于纵向拉伸而引起的局部屈曲,但是由于过度的轴向拉伸应变或横截面变平,管道可能会发生故障。

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