欠平衡鱼骨钻井在非常规油藏中提高采收率和减少碳足迹的应用

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引用次数: 3

摘要

鱼骨钻井(FbD)是指在垂直井眼或斜井眼的不同方向上钻几个微孔。与多边微孔钻井类似,FbD可以通过连接现有的天然裂缝来提高天然裂缝地层或重复压裂作业中的油气产量。当与连续油管欠平衡钻井相结合时,FbD通过减缓油气从储层流向井筒的自然流动,进一步提高了产量。鱼骨的设计方面包括确定分支的数量,长度,分支之间的距离以及分支与主钻孔的侧边角度。此外,设计适合FbD条件的高效钻柱组件是FbD技术发展的另一个重要设计方面。这方面的例子包括高性能的小直径井下马达,以及使用不同脉冲频率和波压的高压脉冲放电(HVPD)等离子冲击波对地层施加剪切力,使其更容易破裂。本文将全面回顾FbD技术,包括其目前的一些应用和设计方面。将讨论FbD与水力压裂结合使用的可能性,通过建立连接裂缝网络来提高产量,并比较其技术和经济效益以及挑战
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of Underbalanced Fishbone Drilling for Improved Recovery and Reduced Carbon Footprint in Unconventional Plays
Fishbone Drilling (FbD) consists of drilling several micro-holes in different directions from the main vertical or deviated wellbore. Similar to multilateral micro-hole drilling, FbD may be used to enhance hydrocarbon production in naturally fractured formations or in refracturing operations by interconnecting the existing natural fractures. When combined with underbalanced drilling using a coiled tubing rig, FbD enhances the production further by easing the natural flow of the hydrocarbon from the reservoir to the wellbore. The design aspects of the Fishbones include determining the number, length, distance between the branches, and the angle of sidetracking of the branches from the main borehole. In addition, the design of efficient drill string components to suit the FbD conditions are another important design aspect in FbD technology development. Examples of this include a high-performance small, diameter downhole motor and the use of High Voltage Pulsed Discharge (HVPD) plasma shock waves at different pulse frequencies and wave pressures to impose shear forces on the formation to break it more easily. This paper will present a comprehensive review of the FbD technology, including some of its current applications and design aspects. The possibility of using FbD in conjunction with hydraulic fracturing to boost production by creating a network of connected fractures will be discussed, and some of its technical and economic benefits and challenges will be compared
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