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Why Not Boosting? Uncover the True Value of Your Subsea Asset

机译:为什么不加强?揭示您的海底资产的真实价值

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The first subsea multiphase boosting system was installed in 1994 and it is today a proven technology with a global track record. In addition to bringing increased production and recovery, multiphase boosting may also reduce flow assurance issues, reduce project CAPEX and OPEX, improve operability and safety as well as reduce the greenhouse gas emissions when compared to gas lift, the default lifting solution. A review of the evaluation process and drivers during subsea artificial lift evaluations over the last three decades indicates that in general only a few of the actual upsides of subsea multiphase boosting have been considered, suggesting that there is a need for a more complete overview of the advantages and an approach to uncovering and quantifying the actual value. This paper discusses the different aspects of subsea multiphase boosting through a comprehensive list of tangible benefits that may support the field development decision process towards identifying the potentially significant and hidden value of subsea multiphase boosting. Referencing experience from more than 30 installations it also provides a historical summary of the various aspects of subsea boosting and which drivers were and were not considered during the decision making process.
机译:第一个海底多相增压系统于1994年安装,如今已成为具有全球历史记录的可靠技术。与默认的举升解决方案气举相比,多相升压不仅可以提高产量和回收率,还可以减少流量保证问题,减少项目的资本支出和运营支出,提高可操作性和安全性以及减少温室气体排放。在过去的三十年中,对海底人工举升评估过程中的评估过程和驱动程序进行了审查,结果表明,总体而言,仅考虑了海底多相增压的实际上行空间中的少数几个方面,这表明需要对海底多相升压进行更全面的概述。优势以及发现和量化实际价值的方法。本文通过全面的有形收益清单讨论了海底多相增压的不同方面,这些清单可以为确定海底多相增压潜在的显着和潜在价值的现场开发决策过程提供支持。引用了30多个安装中的经验,它还提供了海底助推器各个方面的历史摘要,以及在决策过程中考虑和不考虑哪些驱动程序。

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