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Combined Electric Line Milling and Clean-out to Eliminate Fluid Costs for Multi-Stage Frac Preparation in Southeast Saskatchewan

机译:结合电线铣削和清理,消除东南萨斯喀彻温省多级FRAC制剂的流体成本

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Objectives/Scope: Clients utilizing Coiled Tubing (CT) for straddle frac operations in multi-stage horizontal wells often encounter cement stringers preventing the frac bottomhole assembly (BHA) from reaching plug back total depth (PBTD) and the packer from sealing to the casing wall. This paper presents the learnings from a 90 well campaign of preparing for fracking operations using an electric line (e-line) milling and clean-out tool. The wells were mostly cemented, 4.5 liners with frac sleeves. This technique reduced frac preparation costs in the cemented wells by approximately 30%. Methods, Procedures, Process: The common practice in Southeast Saskatchewan (SE Sask) is to perform a “well prep” operation prior to the frac equipment’s arrival to the well site. A CT unit equipped with a rotating scraper/mill—and associated fluids—is used for the clean-out, adding to the logistical coordination and well costs. Fluid has several costs associated with it: the cost of the fluid/water itself, heating for winter operations, trucking and disposal. However, “well prep” is considered “cheap insurance” by most operators working in SE Sask compared to the potential costs of a waiting frac crew. Results, Observations, Conclusions: An operator in SE Sask has had success with an alternative clean-out solution to replace the use of fluid for well preps by introducing an e-line method consisting of an electric milling & clean-out tool with a casing collar locator (CCL). The mill is conveyed by e-line tractor and is equipped with a scraper mill to confirm the PBTD and ensure that there is no cement debris or sheath present that could negatively affect the frac operation. Various bailers can be added to collect the cement debris in the same run and ensure it is removed from the wellbore. In combination with the clean-out service, a CCL is deployed and logged to surface to pinpoint the exact sleeve location to be referenced during the frac operation. This new, efficient clean-out solution has proved slightly more time-consuming (~3-5 hours) but yielded significant cost savings of approximately 30% per well of prep costs. These savings come from using e-line equipment, eliminating fluid costs and offering inherently safer operations with a low carbon footprint.
机译:目标/范围:利用卷绕管道(CT)的客户在多级水平井中的跨跨跨越操作经常遇到水泥桁条,防止FRAC底孔组件(BHA)从达到塞背总深度(PBTD)和密封件到壳体上的封装机墙。本文介绍了使用电线(E-Line)铣削和清洁工具准备Fracking操作的90次井展活动的学习。井大多数粘在一起,4.5衬里,带有Frac套管。该技术将水泥井的Frac制备成本降低约30%。方法,程序,过程:东南萨斯喀彻温省(SES SASK)的常见做法是在FRAC设备到达井网站之前进行“井准备”操作。 CT单元配备有旋转刮刀/轧机和相关的流体 - 用于清洁,增加后勤协调和成本。流体有几种与之相关的成本:流体/水本身的成本,冬季运营,货运和处置。然而,由于在SE SASK的大多数运营商相比,在SE SASK相比,“井准备”被认为是“廉价保险”,而在SE SASK相比潜在成本。结果,观察结论:SASK中的操作员通过引入由电动铣削和清洁工具的壳体组成的电子线路方法,通过替代清洁解决方案取得了替代的清洁解决方案,以更换流体的使用,以便采用电动铣削和清洁工具。领定位器(CCL)。该轧机由电子线拖拉机输送,配备刮板磨机以确认PBTD,并确保没有水泥碎片或鞘展示,可以对FRAC操作产生负面影响。可以添加各种扣篮以在相同的运行中收集水泥碎片,并确保从井筒中取出。与清洁服务结合使用,将CCL部署并记录到曲面以定位在FRAC操作期间要引用的精确套筒位置。这种新的高效清洁解决方案已经证明略有耗时(〜3-5小时),但每台井的预备成本约为30%,从而省略了大幅成本。这些节省来自使用E-Line设备,消除流体成本并提供具有低碳足迹的固有更安全的操作。

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