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Expanding Boundaries of Multistage Hydraulic Fracturing with Coiled Tubing in Novoportovskoe Field

机译:Novoportovskoe田地圈管卷管的多级水力压裂界限

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Today,when most reservoirs have low productivity,the question of whether hydraulic fracturing can be applied to the oil rims becomes very important.It was revealed that the efficient way to compensate the fractures and formation contact area under conditions of a necessary hydraulic fracturing reduction was the implementation of a special well completion technology,during which renewable frac sleeves were installed in the fullbore diameter of a liner,with sleeve density being increased for a reliable coverage of the well horizontal spacing with longitudinal fractures(Ishangaliev et al.,2017).In the complex geological conditions of the Novoportovskoye field,a fundamentally new solution was proposed for horizontal well completion – full bore MSF system with sliding sleeves,operated by hydraulic shifting key with coiled tubing(CT).This completion system allows to perform MSF without pulling CT out of the well to the surface and instantly use CT for well clenout in the case of screenout(SO).This decision is aimed to increas production and achive economic efficiency of the field development by increasing the formation coverage by means of larger number of MSF stages per well,and optimizing costs by reducing the time for the entire range of work at the well,that was detailed described by Kazakov et al.,2017.An outstanding example of oil rim stimulation and application of new technology was a project in Novoportovskoye field where 30-and 27-stage mulstistage fracturing operations were successfully performed with shifting ports comopletion operated by coiled tubing.
机译:今天,当大多数水库的生产力低时,液压压裂是否可以应用于油轮辋的问题变得非常重要。揭示了补偿骨折和形成接触面积的有效方法在必要的液压压裂减少的条件下是采用特殊井完井技术的实施,在此期间,可再生的Frac套管安装在衬里的全英尺直径中,套筒密度随着纵向骨折的井水平间距的可靠覆盖而增加(Ishangaliev等,2017)。在NovoPortovskoye领域的复杂地质条件下,提出了一种基本上新的解决方案,采用了具有滑动套筒的水平井完成 - 全孔MSF系统,由螺旋管(CT)的液压移位钥匙操作。该完井系统允许在不拉动的情况下执行MSF在屏幕外的情况下,CT从井到表面才能立即使用CT井Clenout(所以)。这一决定旨在通过通过每井的MSF阶段增加地层覆盖,并通过减少井中整个工作范围的时间来优化成本,提高现场开发的生产和显性经济效率。 Kazakov等人详述的是,2017年,2017年描述的突出例子刺激和新技术的应用是Novoportovskoye领域的一个项目,其中30阶段和27级Mulstistage断裂操作通过盘绕的换档港口搬运管道。

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