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Real-Time Hybrid Coiled Tubing Service Redefines the Concept of Open Architecture Establishing a New Generation of Diagnostic and Coiled Tubing Intervention

机译:实时混合动力盘管服务重新定义开放式架构的概念,建立新一代诊断和盘绕管道干预

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The oil industry is continuously evolving and the need to be more dynamic and efficient is always present. A new downhole Coiled Tubing (CT) technology is now available, capable of performing intervention with both conventional CT tools, and wireline cased hole tools in the same well, allowing optimization of time and reducing any restriction on logging time, by providing a continuous power supply. Additionally, it is possible to execute diagnostic distributed acoustic and temperature sensing if more details are required for a specific zone. Older techniques used in coiled tubing logging sometimes require several runs to achieve the objective. In the well reviewed in this paper, two runs were performed with conventional techniques without achieving the purpose of the intervention. The high gas production rate of the well and the inability to have real-time monitoring of the Production Logging Tool (PLT) data were significant obstacles to success using these methods. This paper presents an optimized intervention wherein a milling operation, a production log, and pressure buildup test are necessary to understand the production profile of the well, identify the gas-oil ratio per reservoir, understand if additional production is impeded because of cross flow or casing leaks, and identify reservoir pressure of the zone. The real-time hybrid integrated system was designed with an open architecture to accommodate any wireline or mechanical tool available in the industry to address operator challenges, such as milling operations where the operator was able to monitor the weight on the bit, the torque, and the differential pressure through the bit; or a PLT job operation where the operator was able to monitor the weight on the bit, and use Casing Collar Locator (CCL) and/or Gamma Ray (GR) sensors to correlate with wireline logs, all in a single CT rigup without the need to change the hybrid bottomhole assembly (BHA), CT string, nor the CT Connector (CTC). Real-time communication with the wireline tool is achieved with a conductor line installed in the CT, which also provides power to the tools. Communication with the integrated bottomhole sensors and distributed profiling capability utilizes the fiber optic lines to transmit the data in real time. Because the communication of the tools is independent, there is no concern over running combinations of multiple downhole sensors.
机译:石油工业不断发展,始终存在更具活力和高效的必要性。现在可以使用新的井下盘绕管(CT)技术,能够通过传统的CT工具进行干预,并在相同的井中进行介入,允许通过提供连续功率来优化时间并降低对伐木时间的任何限制供应。另外,如果特定区域需要更多细节,则可以执行诊断分布声学和温度感测。卷绕管道测井中使用的较旧技术有时需要多个运行来实现目标。在本文的综述中,使用常规技术进行两次运行,而不实现干预的目的。井的高气体生产率和对生产测井工具(PLT)数据的实时监测的无法实时监测是使用这些方法成功的显着障碍。本文介绍了优化干预,其中铣削操作,生产原木和压力累积测试是了解井的生产曲线,识别每个储存器的气体油比,了解是否额外的生产是因为交叉流动或套管泄漏,识别区域的储层压力。实时混合体集成系统设计有开放式架构,可容纳行业中提供的任何有线或机械工具,以解决操作员挑战,例如运营商能够监控钻头上的重量,扭矩和扭矩通过钻头的差压;或者,操作员能够在钻头上监控权重的PLT工作操作,并使用壳体套环定位器(CCL)和/或伽马射线(GR)传感器与有线日志相关联,所有在单个CT RIGUP中没有必要更改混合底孔组件(BHA),CT串,也不是CT连接器(CTC)。使用安装在CT中的导体线实现与电缆工具的实时通信,这也为工具提供电力。与集成的底孔传感器和分布式分析能力的通信利用光纤线实时传输数据。由于工具的通信是独立的,因此没有担心多个井下传感器的运行组合。

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