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Case Study: Completion Design and Operation in High Dogleg Coiled Tubing Drilling Wells

机译:案例研究:高斗圈卷管钻井井完成设计与运行

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Completion operation is one of the most important contributors to successful well deliverables. Without a proper design of the accessories and efficient operation in conveying the completion assembly, the true potential of a well may not be realized. Coiled Tubing Drilling (CTD) was first attempted in Peninsular Malaysia in February 2011 and the wells were designed to be completed as Coiled Tubing (CT) re-entry sidetrack using 2-3/8" pre-drilled liner and swell packers with maximum inclination of 90o angle and dogleg ranges between 30-60o per 100 feet. The liner and swell packer assembly were designed to be conveyed to the target zone via coiled tubing and to go through 3 ?" tubing with maximum clearance of 2.8" and dual casing exit from the existing completion setup. Apart from the small and rigid clearance, another challenges that the team faced was differential sticking due to mud property that was used to maintain hole stability and to prevent the hole from collapsing before the completion was placed. Since the completion would be conveyed through high dogleg environment, the type of liner and swell packer chosen had to able to withstand the bending stresses applied to it. A small error will result in parted assembly or inability for it to be conveyed all the way to the intended zone. This paper presents the challenges faced during the design and completion operations and discusses the program devised to overcome the above mentioned issues. Based on the lesson learnt from previous wells in which the operations were not 100% successful, the team made significant improvements in terms of mud property, swell packer design, procedure changes and introduction of friction reducer into the completion program of the final and last well of the campaign that finally enabled the liner to be conveyed to the total depth (TD) successfully.
机译:完成操作是成功良好可交付成功的最重要的贡献者之一。如果没有适当的配件设计和传送完成组件的高效操作,则可能无法实现井的真正潜力。连续的管道钻井(CTD)于2011年2月在半岛马来西亚尝试,井被设计为使用2-3 / 8“预钻衬里和具有最大倾斜的膨胀封装机的卷管(CT)再入口侧面。在90°角和狗游范围为每100英尺30-60o。衬里和膨胀封隔器组件被设计为通过盘绕的管道传送到目标区域并通过3?“最大间隙为2.8英寸的管道和双套管从现有的完成设置出口。除了小巧的间隙外,球队面临的另一个挑战是由于用于保持孔稳定性的泥浆物质,团队面临的差异粘连从崩溃完成完成之前。由于完成了通过高嘟冰环境传达,所选择的衬垫类型和膨胀封装机必须能够承受应用于它的弯曲应力。较小的错误将导致分开的组装或无法实现它被一路输送到预定区域。本文介绍了在设计和完成操作所面临的挑战,并讨论了程序设计来克服上述问题的基础上,从以前的井,其中业务没有学到的教训100%成功,团队在泥浆物业,膨胀包装机设计,程序变化和介绍方面取得了重大改进摩擦减速器进​​入最终和持续井的完成计划,最终使衬里能够成功传达到总深度(TD)。

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