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Effect of Exploitation Conditions and Flaw Geometry on the Load Carrying Capacity of Casing Pipes for Oil Drilling Rigs

机译:开采条件和缺陷几何对油钻机壳管承载力的影响

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The subject of this work is examination of API J55 steel casing pipes manufactured by high frequency (HF) contact welding. Since the pipes were withdrawn after about 70 000 hours of service in an oil drilling rig, the influence of the exploitation conditions on the material properties is determined. Experimental analysis includes tensile, impact toughness and fatigue testing of the specimens cut from the exploited pipe and the new pipe manufactured from the same-grade material. Additionally, pipe with flaws (stress concentrators) is tested by subjecting to internal pressure. The analysed stress concentrators represent defects which are often found in the exploitation: localized corrosion damages (corrosion pits). They were simulated by machining on the external surface of the pipe wall. The behavior of the pipes with these defects is determined by strain measurement and finite element analysis in software package Abaqus. The dimensions of the defects are varied, in order to determine the dependence of load carrying capacity on their depth and length. Several expressions from the literature are applied for estimation of the maximum pressure in damaged pipelines, and the solutions are compared with the predictions of finite element models. Additionally, triaxiality values at the bottom of the defects are compared with those obtained on tensile specimens, having in mind the key role of this parameter in ductile fracture initiation.
机译:这项工作的主题是通过高频(HF)接触焊制造的API J55钢套管管道的检查。由于管道被在油钻机约70000小时服务的取出后,对材料特性开采条件的影响被确定。实验分析包括拉伸,冲击韧性和从开采管和来自相同级材料制造的新管切割试样的疲劳试验。另外,具有的缺陷(应力集中)管是通过使内部压力测试。所分析的应力集中表示其经常在开采发现的缺陷:局部腐蚀的损害(腐蚀坑)。他们通过加工在管壁的外表面模拟。与这些缺陷的管的行为由应变测量与有限元分析软件包的Abaqus确定。缺陷的尺寸是多种多样的,以便确定负载承载它们的深度和长度的能力的依赖性。从文献几个表达式应用于受损管道的最大压力的估计,并且该溶液用有限元模型的预测比较。此外,在缺陷处的底部三轴值与上拉伸试样获得的那些相比,具有考虑到这个参数在延性断裂起始的关键作用。

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