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Operational Improvements with the Expansion of an Intelligent Coiled Tubing System to Include Real-Time Tension, Compression, and Torque Data Monitoring

机译:通过扩展智能线圈管系统的操作改进,包括实时张力,压缩和扭矩数据监控

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Real-time monitoring of downhole location, pressure, and temperature is currently available for many coiled tubing (CT) operations. A newly-developed tension, compression, and torque (TCT) data monitoring capability in real-time improves operational efficiency and accelerates well recovery in all types of CT operations. From milling, stimulation, and well cleanouts to gas lifting, camera services, logging and perforating operations, this intelligent coiled tubing (ICT) system can provide accurate, real-time down-hole monitoring of high-resolution depth correlation, differential pressure and temperature, and TCT data. The real-time ICT system consists of a 1/8-in. non-intrusive electrical conductor wire inside the carrying CT, surface hardware and software, and three versions of bottomhole assemblies (BHAs) in different sizes: 2 V9-, 2 7/s-, and 3 Vz-in. Each BHA incorporates a conductor release assembly, a casing collar locator (CCL), pressure, and temperature sensor package, and a BHA release function. In addition, a new TCT assembly has been developed for the 2 7/s-in. BHA. Switching between applications is as simple as changing out the BHA, which reduces the need to rig-up and rig-down and leads to operational time and cost savings. The main advantage of this system is that it eliminates the downhole uncertainties so the CT field crew can react to changing conditions, making decisions based on dynamic downhole events and eliminating missed or wasted runs. Several case studies have been recently presented (Livescu et al. 2015a,b) using the 2 Vs-in. BHA. They involved ICT conveyed camera operations; complex cement milling, cleanout, and perforating operations; inflatable plug setting operations for water zone isolation; complex drifting, logging, jetting, zonal isolation, and scale removal operations; and matrix acidizing operations. In this paper the new TCT assembly development and testing are presented showing that combining the TCT data with location, pressure, and temperature data in real-time may increase the job efficiency and control. The new capabilities are important for the differentiation between frictional lock-up and potential obstruction tagging; the effectiveness of extended reach technologies such as fluid hammer tools, tractors, and lubricants related to the weight on bit (WOB); the confirmation of jar activation during fishing jobs; and the milling effectiveness over time, quantifying the mill aggressiveness from the back torque and WOB analysis. In addition, the new TCT data could be used to post-job validate in real-time the pre-job tubing force analysis (TFA).
机译:实时监控井下位置,压力,和温度的目前可用于许多盘管(CT)的操作。在实时新开发的拉伸,压缩,和扭矩(TCT)数据监测能力提高了操作效率,并加速在所有类型的CT操作以及恢复。从铣削,刺激,和良好物清除至气举,照相机服务,记录和射孔作业,这种智能连续油管(ICT)系统可以提供准确,实时井下监测高分辨率深度相关,差压和温度的和TCT数据。实时ICT系统由1/8英寸的。 2 V9-,2 7 / S-,和3 VZ-中:承载CT,表面的硬件和软件,并在不同尺寸的井底组件(的BHA)的三个版本内部非侵入式电导线。每个BHA结合有导体释放组件,套管接箍定位器(CCL),压力和温度传感器封装,以及BHA释放功能。此外,一个新的TCT组件已经开发了用于2 7 / S-英寸BHA。应用程序之间切换很简单,只要改变从BHA,这减少了需要钻机装配和钻机拆卸并导致操作时间和成本节省。该系统的主要优点是,它消除了不确定性井下所以CT现场工作人员可以不断变化的情况做出反应,使得基于动态井下事件的决策和消除错过或浪费运行。一些案例研究已经使用2个差值Vs-中已经最近提出(Livescu等人2015A,B)。 BHA。他们参与ICT传达相机操作;复杂的水泥研磨,清洗和射孔作业;充气塞设置水区隔离的操作;复杂的漂移,记录,喷射,层位封隔,和除垢操作;和基质酸化作业。本文中的新TCT组件的开发和测试都表明该TCT数据与位置,压力,和温度数据在实时的组合可提高作业效率和控制。这些新功能是摩擦接合和潜在的障碍标记之间的区别很重要;伸出距离的技术,如相关的钻头上的重量(WOB)的流体锤的工具,拖拉机,和润滑剂的功效;罐子激活的过程中捕鱼作业的确认;和研磨效果随着时间的推移,量化从背面扭矩和WOB分析磨机侵略性。此外,新的TCT数据可用于作业后验证实时作业前管力分析(TFA)。

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