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Performance evaluation of active wireline heave compensation systems in marine well logging environments

机译:海上测井环境中主动式钢缆升沉补偿系统的性能评估

摘要

The basic functionality and performance of a new Schlumberger active wireline heave compensation system on the JOIDES Resolution was evaluated during the sea trial and a 3-year period of the IODP Phase II operations. A suite of software programs was developed to enable real-time monitoring of the dynamics of logging tools, and assess the efficiency of wireline heave compensation during downhole operations. The evaluation of the system effectiveness was performed under normal logging conditions as well as during stationary tests. Logging data were analyzed for their overall quality and repeatability, and to assess the reliability of high-resolution data such as formation microscanner (FMS) electrical images. This revealed that the system reduces 65–80 % of displacement or 88–98 % variance of downhole tool motion in stationary mode under heave conditions of ±0.2–1.5 m and water depths of 300–4,500 m in open holes. Under similar water/heave conditions, the compensator system reduces tool displacement by 50–60 %, or 75–84 % variance in downhole tool motion during normal logging operations. Such compensation efficiency (CE) is comparable to previous compensation systems, but using advanced and upgradeable technologies, and provides 50–85 % heave motion and heave variance attenuation. Moreover, logging down/up at low speeds (300–600 m/h) reduces the system’s CE values by 15–20 %, and logging down at higher speeds (1,000–1,200 m/h) eliminates CE values by 55–65 %. Considering the high quality of the logging data collected, it is concluded that the new system can provide an improved level of compensation over previous systems. Also, if practically feasible, future integration of downhole cable dynamics as an input feedback into the current system could further improve its compensation efficiency during logging operations.
机译:在海上试验和IODP II期运行的三年期间,评估了基于JOIDES决议的新型斯伦贝谢有源电缆升沉补偿系统的基本功能和性能。开发了一套软件程序,可以实时监控测井工具的动态,并评估井下作业期间缆索升沉补偿的效率。系统有效性的评估是在正常测井条件下以及在固定测试期间进行的。分析测井数据的总体质量和可重复性,并评估高分辨率数据(例如地层微扫描仪(FMS)电图像)的可靠性。这表明,在±0.2–1.5 m的升沉条件和裸眼水深300–4,500 m的静止条件下,该系统在固定模式下可减少65-80%的位移或88-98%的井下刀具运动方差。在类似的水/起伏条件下,补偿器系统可在正常测井作业期间将工具位移减少50–60%,或将井下工具运动的偏差减少75–84%。这种补偿效率(CE)与以前的补偿系统相当,但是使用了先进且可升级的技术,并提供了50-85%的升沉运动和升沉变化衰减。此外,以低速(300–600 m / h)向下登录/登高会使系统的CE值降低15–20%,而以较高速度(1,000–1,200 m / h)向下登录则可消除55–65%的CE值。考虑到收集到的测井数据的高质量,可以得出结论,新系统可以提供比以前系统更高的补偿水平。同样,如果实际可行,将来将井下电缆动力学作为当前系统的输入反馈进行集成可以进一步提高测井作业期间的补偿效率。

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