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Downhole Production Logging for Locating Water Sources in Open Hole Completion Oil Producer Wells

机译:井下生产测井,用于在开孔完成石油生产商井中定位水源

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The use of open-hole completions in the design of production wells is a particularly appealing choice for oil companies, since it can ensure huge economic advantage compared to conventional cased-hole completions. Nowadays, most operators are looking for more innovative economical well completion design. Swell packer is one of the technology that widely used in open-hole completion strategy with combination of others completion accessories. Coupling the swell packer with open-hole completion application, it makes multiple zonal pressure isolation in the following open-hole completion possible: bare foot condition, predrilled liner, stand-alone screen, open-hole gravel pack or even open-hole fracturing packing. However, few typical implications associated with open-hole completion which complicated further the well integrity and flow performance monitoring. In 2012, 11 oil producer wells were completed in Field X with open-hole completion and installed with stand-alone screen (SAS), swell packers and double valve float shoes. First oil was achieved in April 2012 with all wells initially producing high oil rate and low water cut. However, towards the end of 2013, some of the wells started to show high water production. Production logging (PL) was conducted at Well #1 to evaluate the flow contribution and water source. It was concluded that the water was coming from the bottom of double valve float shoe. Remedial action was taken by setting a plug for water shut-off and the water rate dropped drastically. In 2015, it was decided to replicate the production/well diagnostic analysis in all open-hole completed wells. Similar results were then observed by production log (PL) and consequently, remedial action was taken accordingly. The production log (PL) interpretation, historical production plot and surface well test results were integrated and provide the required information to determine the forward production strategy in these open- hole completed wells. This paper will share multiple case studies where water source diagnostics have been performed in open-hole completions, as well as lessons learnt and best practices throughout this process.
机译:在生产井设计中使用开放孔完井是石油公司的特别吸引人的选择,因为与传统的套管完井相比,它可以确保巨大的经济优势。如今,大多数运营商正在寻找更具创新性的经济良好完成设计。 Swell Packer是一种技术之一,其与其他完成配件的结合相结合的开放孔完井策略之一。将膨胀封装器与开孔完井应用耦合,在以下开放孔完井中使多个区域压力隔离成为可能:裸脚状况,倒进的衬里,独立屏幕,开孔砾石包或甚至开孔压裂包装。然而,很少有与开放孔完成相关的典型意义,其进一步复杂的井完整性和流动性能监测。 2012年,11个石油生产者井在X现场X中完成,开孔完成,并安装有独立屏幕(SAS),膨胀封装机和双阀浮鞋。第一石油于2012年4月实现,最初生产高油速率和低水量的井。但是,在2013年底,一些井开始展示高水产。生产测井(PL)在井#1进行,以评估流量贡献和水源。得出结论是,水从双阀浮鞋底来源。通过设置水闭塞的插头采取补救措施,水费急剧下降。 2015年,决定在所有开放孔中复制生产/良好的诊断分析。然后通过生产对数(PL)观察类似的结果,因此,相应地采取补救措施。生产日志(PL)解释,历史生产地块和表面井测试结果集成并提供了所需信息,以确定这些开放井中完成的井中的前向生产策略。本文将共享多种案例研究,其中在开放孔完井中进行了水源诊断,以及在整个过程中汲取的经验教训和最佳实践。

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