通过专注于回归基础的WRFM优化和恢复,提高棕地油田集群生产的盈利能力:习惯油田集群经验

Osazuwa B. Uyiosa, Esharegharan Ovokerhoyi, Taro Onajite, Baranu Suka, Ibikunle Gbolade, Obot A. Aniekan
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摘要

大多数棕地都存在固有的问题,包括但不限于产水量增加、油藏压力下降、出砂增加以及由于资产老化导致的井/设施完整性挑战。对于Habic Assets,频繁发生的不安全和设施破坏事件为有效管理资产增加了非工程方面的挑战。井的生产正常运行时间受到这一新挑战的高度影响,这就需要不断优化和创新,以确保该资产保持盈利。本文介绍了石油工程和资产生产集成团队用于实现资产业务承诺的简单且经济高效的方法。综合团队审查了各种策略,以利用长期以来“修复基础”工具的优势来遏制资产缩水的财富。采用了两种关键方法:首先,将监测数据纳入综合生产系统模型(IPSM),并使用Chan诊断工具,定义井作业封包并用于优化生产。根据评估结果,该团队提出了几种生产系统优化方案,在允许的产量范围内,估计总产量约为7800桶/天。其次,根据标准井完整性推荐做法,对用于临时固定的长闭井进行了流量测试,并收集了监测数据作为指导。该团队根据历史关井油管头压力(CITHP)对管柱进行了优先级排序,进行了风险评估,并确保了缓解措施,以进行流动试验。由此确定了7条管道,总储量为4200桶/天。通过对生产井和封闭井的综合评估,恢复和优化的努力增加了6200桶/天的总潜力,一旦实施和测试了其他3口封闭井的优化机会和开放,预计还将增加约5800桶/天的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Driving Profitability in Brownfield Field Cluster Production Through Focused Back-To-Basics WRFM Optimization & Restoration: Habic Field Cluster Experience
Most brown fields have inherent issues ranging from, but not limited to increasing water production, reservoir pressure decline, increasing sand production and wells/facility integrity challenges due to Asset aging. For the Habic Assets, frequent incidents of insecurity and vandalization of facilities has added non-engineering challenges to the effective management of Assets. Well production uptime is highly impacted by this new challenge, and this has necessitated continuous optimization and innovation to ensure that the Asset remains profitable. This paper presents the simple and cost-effective approach used by the integrated Petroleum Engineering & Asset Production teams to deliver business promise for the Asset. The integrated team reviewed various strategies to harness the benefits of the age long "fix-the-basics" tools to arrest the dwindling fortunes of the Assets. Two key approaches were employed: firstly, surveillance data was incorporated in integrated production system models (IPSM) and using the Chan diagnostic tool, well operating envelopes were defined and used for optimization of producers. Based on the outcome of the reviews, the team proposed several production system optimizations with combined estimated gain of ca. 7800 bopd within allowable rate. Secondly, long closed-in well stock meant for temporary securing in line with standard well integrity recommended practice were flow tested using surveillance data gathered as a guide. The team prioritized strings in terms of historical closed-in tubing head pressure (CITHP), held risk assessments sessions and secured mitigations to perform the flow trial. This led to the identification of 7 conduits with combined potential of 4200 bopd. Both restoration and optimization efforts from integrated review of producing and closed-in well stock has added a combined potential of 6200 bopd with a further ca.5800 bopd expected once the outstanding optimization opportunities and open-up of 3 other closed-in wells are implemented and tested.
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