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Role of Surveillance in Improving Subsea Productivity

机译:监测在提高海底生产率方面的作用

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A number of industry sources have identified the need to improve overall productivity of subsea wells through the application of monitoring and control systems in the wellbore and on the seabed. To achieve this goal, two elements must be mastered: information and measurements of key attributes of the well/reservoir productivity, and a means to change and command the process, preferably through remote-controlled devices rather than traditional well intervention. With the advent of intelligent wells, the second element has been addressed through a variety of process control devices used at different points in the wellbore and on the seabed. However, the growth of this process was limited by the absence of effective information gathering and data transmission systems in subsea wells, which remained underdeveloped compared to other subsea hardware. This resulted in systematic information bottlenecking caused by poor connectivity between the wellbore and the rest of the subsea infrastructure. The paper introduces a complementary surveillance system that works with existing subsea devices and highlights its role in gathering and transmitting well and subsea data reliably and in sufficient time needed to maintain optimal production. In particular, the system targets high data traffic areas in order to de-bottleneck the subsea transmission systems and provides wellbore monitoring and inflow quantification. A continuous data highway is now available to both wellbore and subseabased measurements, leading to improved monitoring and control of the entire subsea system. The applications and benefits of the system are demonstrated through a case study. The study discusses the role of the surveillance system in bringing the productivity index of subsea wells to be in par with the platform wells. It also demonstrates the need to rethink the flow assurance process as increasing number of distributed seabed measurements become available to the subsea industry and tieback distances increase to make the best use of expensive host facilities.
机译:一些业内人士指出,有必要通过监测和控制系统在井筒和海底的应用,提高海底油井的整体生产力。为了实现这一目标,两个元件必须掌握:信息和阱/储存生产率的关键属性的测量,以及对变化的手段和命令的过程中,优选地通过远程控制设备,而不是传统的油井干预。随着智能井的到来,一直在第二元件通过各种在井眼中并在海床上的不同点用于过程控制设备的寻址。然而,该方法的生长由于缺乏在海底油井有效信息收集和数据传输系统,相比于其它海底硬件这仍然欠发达的限制。这导致了系统信息瓶颈的井筒和海底基础设施的其余部分之间的连接不良造成的。本文介绍的互补监控系统,与现有的海底设备以及亮点其在收集和发射阱,可靠,在保持最佳生产需要有足够的时间海底数据作用的作品。特别是,为了系统定位于高数据流量大的地方脱瓶颈海底传输系统,并提供井筒监测和量化流入。连续数据高速公路现已向两个井筒和subseabased测量,从而改善监测和整个海底系统的控制权。该系统的应用和效益通过案例研究证明。该研究讨论了监控系统在将海底油井的生产指数是在参数与油井平台的作用。这也表明,有必要重新考虑流动保证工艺提高分布式海底测量的数量会提供给海底行业和回接距离增加,使昂贵的主机设备物尽其用。

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