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METHOD FOR FATIGUE TESTING OF SUBSEA WELLHEAD CONNECTOR SEGMENTS

机译:海底井口连接器段疲劳试验方法

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For subsea well drilling, the drilling rig is connected to the subsea well by a marine riser and subsea BOP equipped with a remotely controlled wellhead connector latched onto the subsea wellhead profile. The level of cyclic loading on subsea wellheads is steadily increasing due to use of increasingly larger drilling rigs with larger BOPs, the drilling of wells in harsher environments characterized by strong high waves. The remotely controlled wellhead connector forces a series of locking dogs into an externally machined profile on the wellhead. This external profile is generally referred to as a wellhead profile. The fatigue resistance of this safety-critical connection is typically estimated by FE analysis. Due to the large size of the equipment, and high cost of testing, very limited fatigue testing, if any, has been carried out. A test method has therefore been developed, where a special test fixture is used to apply realistic boundary conditions and variable tensile loads to a small sector or segment of a wellhead connector. A primary objective is to generate fatigue-critical stress fields in the segments under tensile test load that closely replicates the stress fields in a full-scale connector subject to bending loads. A secondary objective is to support the introduction of the practice of testing several segments cut from a single wellhead connector. The testing of narrow sector segments allows the use of readily available test apparatus. It is thereby envisaged that the total cost of testing (specimens and test laboratory costs) can be substantially reduced in comparison with full-scale connector fatigue testing. This paper describes the text fixture, the connector locking dog, and wellhead segments designed to replicate the stress fields in a full-scale wellhead connector. The test fixture and test specimens are designed to match conditions and fatigue stress of the full-scale connector. The test specimens are instrumented with strain gauges at fatigue hotspots. Digital image correlation (DIC) is used to measure the relative motion between the wellhead segment and the locking dog. The measured strains are compared with corresponding values from finite element analysis of the test. The DIC results are also used for estimating the coefficient of friction between wellhead profile and locking dog. Very good agreement is found between measured hotspot strains and strains from the FE analyses for consistent load conditions. The test fixture is therefore considered suitable for segment fatigue testing, where the test results can be used to estimate the bending fatigue capacity of a full-scale wellhead connector. Results from fatigue testing by this test method are presented in a separate OMAE2020 paper.
机译:用于海底钻井,在钻井平台是由配备有闩锁到海底井口轮廓的远程控制井口连接器的海上立管和海底防喷器连接到所述海底井。上海底井口循环加载的电平被稳定,由于使用与较大的防喷器越来越大的钻机的增加,在更苛刻的环境井的钻井,其特征在于强高波。远程控制的井口连接器的力的一系列锁定犬进入井口上外部加工轮廓的。该外部轮廓一般被称为一个井口轮廓。此安全关键连接的抗疲劳性通常是通过有限元分析来估计。由于大尺寸的设备,和检测成本高,非常有限的疲劳测试,如果有的话,已经开展了。因此,一个检验方法已经被开发出来,其中一个特殊的测试夹具用于现实边界条件和可变拉伸载荷应用到井口连接器的小扇区或段。一个主要目的是产生在紧密复制在全规模连接器受到弯曲载荷的应力场拉伸试验负载下的区段的疲劳极限应力场。第二个目标是支持引入测试从单个井口连接器切割成若干段的做法。窄扇形段的测试允许使用容易获得的试验装置。由此设想,测试(试件和测试实验室成本)的总成本可以与全尺寸连接器疲劳试验相比,可以大幅减少。本文描述了文本夹具,所述连接器锁定狗,和井口段设计用于复制在全刻度井口连接器的应力场。测试夹具和试样被设计成匹配条件和满量程连接器的疲劳应力。该试验样品用仪器在疲劳热点应变计。数字图像相关(DIC)是用来测量井口段和锁定狗之间的相对运动。所测得的菌株与从测试的有限元分析的相应值进行比较。该DIC结果也用于估计井口轮廓和锁定狗之间的摩擦系数。非常好的一致性测量热点菌株和菌株之间发现从FE分析了一致的负载条件。因此,该测试固定装置被认为适合于段疲劳试验,其中测试结果可用于估计全规模井口连接器的弯曲疲劳的能力。通过这种测试方法疲劳试验结果在单独OMAE2020纸被呈现。

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