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Failure prediction of gas and oil drilling rig pipelines with axial defects

机译:具有轴向缺陷的气体和钻井钻井钻井钻管的故障预测

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Working conditions of casing pipes in drilling rigs can significantly influence the initiation and development of damage in the material, and therefore also the safe service of the entire system. In this work, an integrity assessment of a steel pipe with initial defect (machined surface crack) is presented. The position of this defect is on the external surface; unlike transport pipes, where internal surface is often endangered due to the contact with the fluid, casing pipes are often exposed to damages at the external surface. Analyzed crack is in axial direction, bearing in mind that this type of defect most significantly decreases the load carrying capacity of the cylindrical pressurized components. A pipe segment exposed to internal pressure is analyzed experimentally and numerically, using the finite element method. The experimental setup included the tracking of crack mouth opening displacement (CMOD) values, as well as J integral, which is determined by application of direct measurement. Criteria for pipe failure are determined on finite element models of the pipe; fracture initiation and plastic collapse are considered as failure mechanisms. The size of the crack is varied in the finite element models; several 3D models with different crack sizes (length and depth) are evaluated. Dependence of maximum internal pressure on the defect size is obtained. 2D plane strain models are also examined, with an aim to determine the applicability limits of this simplified approach. Based on the obtained results, integrity assessment criteria for the analyzed geometries are discussed.
机译:钻井钻井平台的套管管的工作条件可以显着影响材料损坏的启动和开发,因此也是整个系统的安全服务。在这项工作中,提出了具有初始缺陷(机加工表面裂纹)的钢管的完整性评估。这种缺陷的位置在外表面上;与运输管不同,由于与流体接触而常常危及内表面,壳体管通常暴露于外表面的损坏。分析的裂缝处于轴向,记住,这种类型的缺陷最显着降低了圆柱形加压部件的承载能力。通过有限元方法在实验和数值上进行暴露于内压的管段。实验设置包括跟踪裂缝口开口位移(CMOD)值,以及j积分,其通过直接测量确定。管道故障标准在管道的有限元模型上确定;骨折启动和塑料塌陷被视为失效机制。裂缝的尺寸在有限元模型中变化;评估具有不同裂缝尺寸(长度和深度)的几种3D模型。获得最大内部压力对缺陷尺寸的依赖性。还检查了2D平面应变模型,旨在确定这种简化方法的适用性限制。根据所获得的结果,讨论了分析的几何形状的完整性评估标准。

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