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ULTRA LONG RANGE DTS (>300KM) TO SUPPORT DEEP OFFSHORE AND LONG TIEBACK DEVELOPMENTS

机译:超长范围DTS(> 300km),支持深层海上和长期的阻尼发展

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The continuous demand for energy supplies leads operators to explore and exploit more remote offshore oil fields characterized by deeper deployments, longer tiebacks and subsea completion. These offshore developments either lie in tropical regions subject to stormy weather or in extreme arctic conditions. They imply new requirements in terms of operational efficiency and predictive maintenance for cost optimization as well as environmental footprint minimization. Consequently, leak detection and flow assurance are required over distances exceeding hundreds of kilometers. And the increasing trend of building all electric completion and heated flowlines impose the use of equally long high voltage power cables. Distributed temperature sensing (DTS) is a widely adopted technology for leak detection and localization, for heated flow line monitoring and for power cable thermal rating. Optical fiber cables are installed alongside the structure providing detection with meter accuracy localization and degree thermal variation sensitivity. However, there is currently no commercially available DTS instrument capable of reaching a 100km single span without any means of repeating the signal, let alone longer range. Thus, a 300km pipeline would normally require marinized equipment, which is often not a practical solution. The Omnisens DITEST, a DTS instrument based on Stimulated Brillouin Scattering (SBS) is intrinsically capable of the longest available sensing length, now reaching a sensing distance of around 70km at once; in addition, it is compatible with optical amplifier technology as found in any submarine network. In the present work, we show that, by combining 5 spans of slightly above 65km and 4 optical repeaters together, it is possible to achieve a total of 330km sensing from a single DITEST. Measurement time over the full distance was typically 100minutes, providing a temperature resolution of typically 1K for a spatial resolution of 3m at the end of the 330km long sensing fiber. Shorter measurement time, more suitable with the application could be achieved using optical coding. As the optical repeater technology is similar to that of telecommunication, efficient cost reduction could be achieved by sharing the repeaters between the sensing system and the needed communication system. At the end of each sensing span, the sensing cable is connected to the repeater for amplification purposes and then goes back to the pipeline for monitoring the next span. The repeaters themselves are electrically powered by conductors embedded in the communication infrastructure. A viable and cost effective solution to meet the requirements of subsea long distance leak monitoring is thus demonstrated.
机译:对能源供应的不断需求使运营商探索和利用更多远程境外油田,其特征在于更深层次的部署,更长的阻力和海底完成。这些海上发展既是暴风雨天气或极端北极状况的热带地区。它们在运营效率和预测性维护方面暗示了新的需求,以实现成本优化以及环境足迹最小化。因此,在超过数百公里的距离上需要泄漏检测和流量保证。并且建设所有电动完成和加热流动线的增加趋势强加了同样长的高压电力电缆的使用。分布式温度传感(DTS)是一种广泛采用的泄漏检测和定位技术,用于加热流线监测和电力电缆热额定值。光纤电缆沿着结构沿着仪表精度定位和度热变化灵敏度的检测安装。然而,目前没有商业上可用的DTS仪器能够达到100km单跨,而无需任何重复信号的方法,更不用说更长的范围。因此,300公里的管道通常需要腌制设备,这通常不是实用的解决方案。基于受刺激的布里渊散射(SBS)的DTS仪器的Omnisens DITESTS本质上是能够最长可用的感测长度,现在一次达到约70km的感测距离;此外,它与任何潜艇网络中的光放大器技术兼容。在本作工作中,我们表明,通过将略高于65km和4个光学中继器的5个跨度组合在一起,可以从单个DITEST获得总共330km的感测。在全距离上的测量时间通常为100分钟,在330km长传感纤维的末端,在330km的末端在3m的空间分辨率下提供通常1k的温度分辨率。使用光学编码可以实现更短的测量时间,更适合应用程序。随着光学转发器技术类似于电信的技术,可以通过在感测系统和所需的通信系统之间共享中继器来实现有效的成本降低。在每个感测跨度的末端,传感电缆连接到中继器以进行放大目的,然后返回到管道以监视下一个跨度。中继器本身被嵌入在通信基础设施中的导体电动。因此,表明了满足海底长距离泄漏监测要求的可行性和成本效益的解决方案。

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