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STRAIN PREDICTION FOR X80 STEEL PIPELINE SUBJECTED TO STRIKE-SLIP FAULT UNDER COMPRESSION COMBINED WITH BENDING

机译:X80钢管道受压弯滑断裂的应变预测。

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Strike-slip fault is one main kind of PGD faced by long distance gas pipelines. Based on non-linear finite element method, a numerical model for buried pipeline under strike-slip fault was proposed. The model was proven to be reasonable by comparing the numerical results with previous researcher's experiment results. By using the FE model, peak compressive strain of X80 steel pipeline subjected to strike-slip fault under compression combined with bending was studied. The sensitivities of the diameter, wall thickness, soil rigidity, fault displacement and crossing angle on the peak compressive strain of the pipeline are examined in detail. Furthermore, based on numerous numerical results, a regression equation for predicting peak compressive strain of X80 steel pipeline is proposed. The applicable range of the formula is given. 15 true design cases in the Second West to East pipeline Project in China were investigated to demonstrate the accuracy and applicability of the proposed methodology by comparing the predicting peak compressive strain results with FEM results. The proposed method can be referred in the strain-based and reliability-based design for X80 steel pipelines subjected to strike-slip fault.
机译:滑移断层是长距离输气管道面临的一种主要的PGD类型。基于非线性有限元方法,提出了走滑断层下埋地管道的数值模型。通过将数值结果与先前研究人员的实验结果进行比较,证明该模型是合理的。利用有限元模型,研究了X80钢在压缩弯曲作用下走滑断层时的峰值压缩应变。详细研究了直径,壁厚,土壤刚度,断层位移和交叉角对管道峰值压缩应变的敏感性。此外,基于大量数值结果,提出了用于预测X80钢管峰值压缩应变的回归方程。给出了公式的适用范围。通过比较预测的峰值压缩应变结果与有限元结果,研究了中国西气东输二期工程中的15个真实设计案例,以证明所提出方法的准确性和适用性。所提出的方法可以在X80钢管道走滑断裂的基于应变和基于可靠性的设计中参考。

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