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Methodology for failure mode prediction of onshore buried steel pipelines subjected to reverse fault rupture

机译:陆上埋藏钢管内失效模式预测的方法论逆转故障破裂

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摘要

Oil and gas buried steel pipelines are vulnerable to permanent ground displacements, such as those resulting from tectonic fault activation. The dominant failure mechanism is strongly dependent on the type of faulting. The more complex case is the reverse fault type because the crossing pipeline is significantly compressed and bent and consequently, it may fail due to local buckling, upheaval buckling or tensile weld fracture. Which among those failure modes will be critical, depends on a set of parameters, comprising fault crossing geometry, diameter to thickness ratio (D/t) of the pipeline, pipeline steel grade, and backfill soil properties. An extensive parametric study is carried out, followed by statistical processing of the results in order to formulate simplified statistical models for the prediction of the predominant failure mode according to criteria set by the American Lifelines Alliance and EN 1998-4 standards. The study thus offers the first comprehensive attempt to quantify the qualitative criterion that deeply buried pipes with high D/t ratio tend to buckle locally, while shallowly buried pipes with low D/t ratio tend to buckle globally. Pipe designers may use the provided expressions to predict the predominant failure mode in order to either apply the necessary seismic countermeasures or re-design the pipeline if necessary.
机译:石油和天然气埋藏钢管易受永久地移的群体,例如由构造故障激活产生的那些。主导失败机制强烈依赖于断层的类型。更复杂的情况是反向故障类型,因为交叉管道被显着压缩和弯曲,因此,由于局部屈曲,膨胀或拉伸焊接裂缝可能会失效。这些故障模式中的哪些将是至关重要的,取决于一组参数,包括故障交叉几何形状,管道,管道钢级和回填土壤性能的直径到厚度比(D / T)。进行了广泛的参数研究,然后进行了结果的统计处理,以便根据美国生命线联盟和EN 1998-4标准设置的标准来制定用于预测主要失效模式的简化统计模型。因此,该研究提供了第一次全面的尝试来量化具有高D / T比例的深埋管道的定性标准倾向于在本地弯曲,而具有低D / T比的浅埋管道倾向于在全球弯曲。管道设计人员可以使用所提供的表达来预测主要的失效模式,以便在必要时应用必要的地震对策或重新设计管道。

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