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DRILLING RISER MODEL TESTS FOR SOFTWARE VERIFICATION

机译:用于软件验证的钻井上升器模型测试

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Marine drilling riser is subject to complicated environmental loads which include top motions due to Mobile Offshore Drilling Unit (MODU), wave loads and current loads. Cyclic dynamic loads will cause severe fatigue accumulation along the drilling riser system, especially at the subsea well head (WH). Statoil and BP have carried out a comprehensive model test program on drilling riser in MARINTEK's Towing Tank in February 2015. The objective is to validate and verify software predictions of drilling riser behaviour under various environmental conditions by use of model test data. Six drilling riser configurations were tested, including different components such as Upper Flex Joint (UFJ), tensioner, marine riser, Lower Marine Riser Package (LMRP), Blow-Out Preventer (BOP), Lower Flex Joint (LFJ), buoyancy elements and seabed boundary model. The drilling riser models were tested in different load conditions: 1. Forced top motion tests 2. Regular wave test 3. Combined regular wave and towing test 4. Irregular wave test 5. Combined irregular wave and towing test 6. Towing test (VIV) Measurements were made of micro bending strains and accelerations along the riser in both In-Line (IL) and Cross-Flow (CF) directions. Video recordings were made both above and under water. In this paper, the test set-up and test program are presented. Comparisons of results between model test and RIFLEX simulation are presented on selected cases. Preliminary results show that the drilling riser model tests are able to capture the typical dynamic responses observed from field measurement, and the comparison between model test and RIFLEX simulation is promising.
机译:海上钻探立管要承受复杂的环境载荷,其中包括移动式海上钻井平台(MODU)引起的最高运动,波浪载荷和当前载荷。周期性的动态载荷将导致钻探立管系统(尤其是海底井口(WH))处严重的疲劳累积。挪威国家石油公司(Statoil)和英国石油(BP)于2015年2月在MARINTEK的拖船油箱中对钻探立管进行了全面的模型测试程序。其目的是通过使用模型测试数据来验证和验证各种环境条件下钻探立管性能的软件预测。测试了六种钻井立管配置,包括不同的组件,例如上部挠性接头(UFJ),张紧器,船用立管,下部船用立管组件(LMRP),防喷器(BOP),下部挠性接头(LFJ),浮力元件和海床边界模型。在不同的载荷条件下对钻探立管模型进行了测试:1.强制顶运动测试2.规则波测试3.规则波与拖曳测试相结合4.不规则波测试5.不规则波与拖曳测试相结合6.拖曳测试(VIV)沿直管(IL)和错流(CF)方向对立管的微弯曲应变和加速度进行了测量。在水上和水下都进行了录像。本文介绍了测试设置和测试程序。针对选定的案例,对模型测试和RIFLEX仿真的结果进行了比较。初步结果表明,钻井立管模型测试能够捕获现场测量中观察到的典型动力响应,并且模型测试与RIFLEX仿真之间的比较是有希望的。

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