首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >NEW FLOW ASSURANCE SYSTEM WITH HIGH SPEED SUBSEA FIBER OPTIC MONITORING OF PRESSURE AND TEMPERATURE
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NEW FLOW ASSURANCE SYSTEM WITH HIGH SPEED SUBSEA FIBER OPTIC MONITORING OF PRESSURE AND TEMPERATURE

机译:具有高速海面光纤监测压力和温度的新流量保证系统

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Subsea production control systems are instrumented to constantly monitor flowline pressure and temperature at key locations to prevent plugging and introduce mitigating control strategies. New fiber optic sensors with ruggedized construction and non-electrical components are subjected to accelerated aging tests and deployed in several installations with long service life. An overview of current progress with fiber optic technology is provided for fatigue monitoring, temperature, pressure, and strain sensing. Recent developments include improved service life, novel bonding methods, pipeline sensor station improvements, sensor calibration, and long-term fatigue analysis. The latest advancements are validated on multiple installations on a subsea tieback in the deepwater Mississippi Canyon of the Gulf of Mexico at 6,500 ft depth. A prior third-party sensor design experienced multiple non-recoverable sensor failures. A new sensor station design is employed on two Flowline Terminations to monitor pressure and temperature at a rate of 100 Hz. Subsea tiebacks are susceptible to flow assurance issues caused by plugging events such as hydrate formation. The system was originally designed to track pig location but transitioned to pressure and temperature sensing. An issue with the transition was the lack of calibration relating the fiber Bragg grating (FBG) strain levels to the actual process conditions. A novel method is presented for in situ adjustment of the sensor array calibration. During the calibration procedure, the sensors produced unanticipated results during pipeline flow shut-in and later startup operations. The sensors helped uncover a configuration of the flow line and sensor locations that is valuable for detecting hydrate forming conditions at a key junction location. The sensors are located before and after the junction of two flow lines in the mixing zone of the pipeline streams. The novel contributions of this study are the high speed data collection, in situ fiber optic calibration, review of advancements in fiber optic sensing technology, and a field case study with multiple sensing arrays. The developments are part of the Clear Gulf study, a collaboration between the offshore energy industry and NASA that was formed in 2010. The objective of the Clear Gulf study is to employ space technology and testing facilities for use in the upstream industry to advance subsea sensor technology. The highly sensitive monitoring systems developed as part of this study are used to give early warnings for flow assurance issues, structural failures, or catastrophic events.
机译:海底生产控制系统被仪表仪表,以在关键位置不断监控流量压力和温度,以防止堵塞并引入减轻控制策略。具有粗糙化结构和非电气元件的新型光纤传感器进行加速老化试验,并在几种使用寿命中安装了几种安装。为疲劳监测,温度,压力和应变感测提供了利用光纤技术的电流进展的概述。最近的发展包括改善的使用寿命,新型粘接方法,管道传感器站改进,传感器校准和长期疲劳分析。最新的进步是在墨西哥湾深水密西西比州峡谷的多个安装上验证了6,500英尺深度。先前的第三方传感器设计经历了多种不可恢复的传感器故障。在两个流线终端上采用新的传感器设计,以以100Hz的速率监测压力和温度。海底连接易于通过堵塞诸如水合物形成的事件引起的流量保证问题。该系统最初设计用于跟踪猪位置,但过渡到压力和温度感测。过渡的问题是缺乏校准,将光纤布拉格光栅(FBG)应变水平与实际过程条件相关联。一种新颖的方法是在传感器阵列校准的原位调整提出了。在校准过程中,传感器在管道流入和稍后的启动操作期间产生了意想不到的结果。传感器帮助揭示流线和传感器位置的配置,该传感器位置对于在密钥交界处检测水合物形成条件是有价值的。传感器位于管道流的混合区中的两个流线的交界前和之后。本研究的新贡献是高速数据收集,原位光纤校准,光纤传感技术的进步综述,以及具有多个传感阵列的现场案例研究。事态的发展是清除墨西哥湾研究的一部分,海上能源行业和美国航天局成立于2010年的目标清除墨西哥湾研究的是之间的合作是采用空间技术和测试上游产业利用设施,以推进海底传感器的技术。作为本研究的一部分开发的高度敏感的监测系统用于为流动保证问题,结构故障或灾难性事件提供早期警告。

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