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Repeatedly Increased Efficiency and Success Rate From a New Solids-Cleanout Process Using Coiled Tubing: A Review of Recent Achievements From Over 100 Operations

机译:通过使用连续油管进行的新的固体清除过程,可反复提高效率和成功率:回顾100多个作业的最新成果

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Solids-cleanouts using Coiled Tubing (CT) remain a major part of total activity in the CT industry. Due to the multitude of parameters that influence solids-transport, it can be very challenging to design and successfully execute solidscleanouts with CT in highly deviated, larger wellbores with e.g. 7” production tubing, or even larger tubulars installed. Numerous papers have been written about the development of wiper trip cleanout technology and associated engineering design tools, but this paper is instead focused on important practical issues that directly impact the effective implementation of wiper trip technology in the field. This paper presents the results and lessons learned based on a database, which was compiled from more than 100 solidscleanout operations using “wiper trip” methodologies. Results will be presented showing how the wiper trip cleanout methodology has improved cleanout efficiency and success rate. Examples are presented showing how the effectiveness of cleanout-bottom hole assemblies (BHA’s) involving positive displacement motors (PDMs) and mills has been improved, while simultaneously reducing stress on surface equipment during the operation. Circulation rates higher than specified maximum rates for the PDM are being used without danger of damaging the PDM while reducing the total volume pumped through the PDM during the cleanout by 80-90%. Larger outer diameter (OD) items in the BHA are kept clean of solids while wiper tripping, reducing the risk of stuck CT and protecting sensitive completion components from undesirable interactions with the PDM/mill-BHA. Multiple wiper trips can be performed in one run without the use of drop balls, while having the ability of using selected functions of critical BHA components and full-size drifting of the wellbore for subsequent operations. Field proven procedures are explained, allowing solids-loading in the annulus to be controlled and reduced when necessary, as well as estimates of solidsvolumes during the cleanout to be established, based on feedback from the cleanout BHA before any solids have actually reached surface.
机译:使用螺旋油管(CT)清除固体仍然是CT行业总活动的主要部分。由于影响固体输送的参数众多,因此在高度偏斜,较大的井眼中使用CT设计并成功执行CT的固体清除工作可能非常具有挑战性。 7英寸生产管,甚至安装了更大的管。关于刮水器脱扣技术和相关的工程设计工具的发展,已经发表了许多论文,但是本文重点关注直接影响刮水器脱扣技术在该领域的有效实施的重要实际问题。本文介绍了基于数据库的结果和经验教训,该数据库是使用“刮水行程”方法从100多个固体清除操作中汇编而来的。将显示结果,显示刮水器行程清洁方法如何提高清洁效率和成功率。实例显示了如何改进包括正排量马达(PDM)和铣刨机的底孔总成(BHA)的效率,同时减少操作过程中地面设备上的应力。使用的循环速率高于PDM的指定最大速率,而没有损坏PDM的危险,同时清除过程中通过PDM泵送的总体积减少了80-90%。 BHA中较大的外径(OD)物品在刮水器跳闸时保持固体清洁,降低了CT卡住的风险,并保护敏感的完井组件免受与PDM / mill-BHA的不良相互作用。一次不需使用落球即可进行多次刮水器跳闸,同时具有使用关键BHA组件的选定功能和井眼的全尺寸漂移进行后续操作的能力。解释了经过现场验证的程序,可以根据需要在任何固体实际到达地面之前,根据清除BHA的反馈,控制和减少环空中的固体负载,并在清除期间确定固体体积的估算值。

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