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Well-Completion Techniques and Methodologies for Maintaining Underbalanced Conditions Throughout Initial and Subsequent Well Interventions

机译:在整个初次和后续试井作业中保持不平衡条件的试井技术和方法

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Underbalanced drilling (UBD) is undoubtedly one of the "hottest" topics in the oilfield today. Although not a new concept, UBD has just recently come of age, as the benefits it offers to the oil and gas industry have been noted only within the last few years. Underbalanced drilling offers many notable advantages, which include:1. Reducing formation damage2. Increasing the rate of penetration (ROP) and bit life.3. Allowing the reservoir to be tested and evaluated while drilling.4. Reducing the number of trips into the hole5. Minimizing differential sticking of pipe6. Limiting lost circulation7. Facilitating early production while drilling8. Accessing depleted or low-pressure reservoirs9. Selecting TD from inflow performance.The benefits of the above are obvious; therefore, they will not be discussed in depth in this paper.While UBD technology has come a long way since the early wells that were brought in via gushers that rose above the wooden derricks, underbalanced drilling can only supply part of the solution-once drilling procedures are concluded, and the completion phase begins; the primary operational drivers change. Rather than focusing on such activities as drilling performance and formation evaluation while drilling, the completion drivers target the reduction of fluid loss and the elimination of formation damage. Thus, attaining a total solution requires that underbalanced conditions not only are maintained during the completion and for the life of the well, but also throughout any future well interventions. Unfortunately, the advances in underbalanced completion technology have lagged behind those seen in underbalanced drilling.This paper will explore the strategies, techniques and tool systems required 1) to maintain an underbalanced condition throughout the initial well completion phase and during all future remedial operations, and 2), to create a cost-effective solution that will enhance and accelerate maximum reservoir drainage.To this end, if underbalanced technology is approached as a production enhancement technique that starts at the initial stage of drilling the well and continues throughout the life of the well, the end result will be that the value of the reservoir will be increased, and will be collected within in a shorter period of time.
机译:欠平衡钻井(UBD)无疑是当今油田中“最热门”的话题之一。尽管不是一个新概念,但UBD才刚刚起步,因为它为石油和天然气行业带来的好处仅在最近几年才被注意到。欠平衡钻井具有许多显着的优势,其中包括: 1.减少编队伤害 2.增加渗透率(ROP)和钻头寿命。 3.允许在钻井时对储层进行测试和评估。 4.减少进洞的次数 5.最小化管道的差异粘连 6.限制流失 7.促进钻井时的早期生产 8.进入枯竭或低压的水库 9.从流入性能中选择TD。 上面的好处是显而易见的。因此,本文将不对其进行深入讨论。 自从通过木井架上方的喷头引入早期井以来,UBD技术已经走了很长一段路,但欠平衡钻井只能提供部分解决方案,一旦钻井程序结束,完井阶段就开始了。主要的经营动因发生了变化。完井驱动程序的目标不是减少钻井时的钻井性能和地层评估等活动,而是着眼于减少流体损失和消除地层损害。因此,要获得整体解决方案,不仅要在完井过程中以及在井的使用寿命内保持不平衡的条件,而且还要在以后的所有井干预中保持不平衡的条件。不幸的是,欠平衡完井技术的进步落后于欠平衡钻井中所看到的那些。 本文将探讨所需的策略,技术和工具系统:1)在整个初始完井阶段以及以后的所有补救措施中维持欠平衡状态,以及2)创建可提高并加速最大油藏的经济有效的解决方案引流。 为此,如果采用欠平衡技术作为增产技术,该技术从钻井的初始阶段开始并在整个生命周期中持续进行,那么最终结果将是增加储层的价值,并会在较短的时间内收集。

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