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Assessment of structural integrity of subsea wellhead system: analytical and numerical study

机译:海底井口系统结构完整性评估:分析和数值研究

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摘要

Subsea wellhead systems exposed to severe fatigue loading are becoming increasingly a significant problem in offshore drilling operations due to their applications in wells with higher levels of pressure and temperature, situated at larger depths and in harsher environments. This has led to a substantial increase in the weight and size of offshore equipment, which, in combination with different loading conditions related to the environmental factors acting on the vessel and riser, has greatly increased the loads acting on subsea well systems. In particular, severe fatigue loading acting on the subsea wellhead system was detected. For this reason, a combined analytical and numerical study investigating the critical effect of crack depth on the overall structural integrity of subsea wellhead systems under cyclic loading was carried out. The study is based on a Linear Elastic Fracture Mechanics (LEFM) approach.
机译:承受严重疲劳载荷的海底井口系统在海上钻井作业中正成为日益严重的问题,这是由于其应用于压力和温度较高,深度较大且环境更恶劣的井中。这导致海上设备的重量和尺寸大大增加,再加上与作用在船舶和立管上的环境因素有关的不同装载条件,大大增加了作用在海底井系统上的载荷。特别地,检测到作用在海底井口系统上的严重疲劳负荷。因此,进行了分析和数值研究相结合的研究,研究了裂纹深度对循环荷载作用下海底井口系统整体结构完整性的关键影响。该研究基于线性弹性断裂力学(LEFM)方法。

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