为什么不提振?发掘海底资产的真正价值

M. Stenhaug, Hongkun Dong, M. Hjelmeland
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引用次数: 1

摘要

首个海底多相增压系统于1994年安装,如今已成为一项成熟的技术,在全球范围内都有应用。除了提高产量和采收率外,多相增压还可以减少流动保障问题,降低项目CAPEX和OPEX,提高可操作性和安全性,并减少温室气体排放,与气举(默认的举升解决方案)相比。回顾过去三十年的水下人工举升评估过程和驱动因素,通常只考虑了水下多相增压的少数实际优势,这表明需要对其优势进行更全面的概述,并找到一种方法来揭示和量化实际价值。本文讨论了水下多相增压的不同方面,通过全面的实际效益列表,可以支持油田开发决策过程,以确定水下多相增压的潜在重要和隐藏价值。参考30多个安装的经验,它还提供了海底增压各个方面的历史总结,以及在决策过程中考虑和不考虑哪些驱动因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Why Not Boosting? Uncover the True Value of Your Subsea Asset
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.
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