首页> 外文会议>Intelligent Energy International Conference >A Case Study: Producer to Injector - Flow Measurement Experiences in Buzzard Field
【24h】

A Case Study: Producer to Injector - Flow Measurement Experiences in Buzzard Field

机译:一个案例研究:生产者注射器 - 秃鹰场中的流量测量体验

获取原文
获取外文期刊封面目录资料

摘要

A case study is presented in this paper on converting producer wells to injector wells in the recently developed Buzzard Field located in the Northern Sea, approximately 60 km northeast of Aberdeen. The field was discovered in 2001, development drilling commenced in 2005, and the first production from the field started in early 2007. To meet the monitoring objectives, operator selected a permanent downhole monitoring system (PDMS) for measurements of pressure, temperature, flow rate, and distributed temperature. Each well was equipped with three permanent optical sensors: pressure/temperature sensor, two-phase flowmeter, and DTS. The PDMS system was designed to accommodate the expansion of the field: as new wells are added to the field, optical sensors for the new wells are also added into the sensor pool and the same surface instrumentation drives the data acquisition process for all sensors via a multiplex device. There are currently more than 30 wells in the field and new wells are being added on a regular basis. In 2011, operator decided to convert two producer wells to injectors. The first well was designated for water injection and the second one for gas injection. The conversion for the water injector was completed in late October 2011. One of the critical issues in this conversion process was to determine the flow rates of the injected fluid precisely to better manage the injection process as this could have a large impact on oil production economics. The optical flowmeters have originally been installed as two-phase flowmeters in the production mode for the Buzzard Field, but it was also well-established that single-phase versions of optical flowmeters have served successfully in a number of water-alternating-gas (WAG) injector applications as reported by other operators. In this particular case, operator and the equipment manufacturer worked together to make sure that the conversion process was successful from the flow measurement standpoint. True to the "intelligent completion concept", in the process of changing the service from producer to injector, no hardware or software changes were made in the flowmeter and the surface instrumentation. The only change was associated with the fluid parameter file in the flow computer which is a part of the surface instrumentation. The process also highlighted the true bidirectional capability of the in-well optical flowmeter, something that most other flow measurement technologies are not capable of doing even at the surface. Furthermore, the process is also independent of the type of the fluid whether the injected fluid is water or gas. Recently, operator completed the gas injector and the injection process started with low flow rates. Currently, the flowmeter reports sound velocities only but it is expected to report flow rates as the gas injection rate is increased above the sensing threshold of the flowmeter. This work describes the producer-to-injector conversion process as well as the experiences associated with it. It also demonstrates how the collaboration between the operator and the equipment manufacturer can lead to a success story in implementing a service change without compromising intelligent completion.
机译:本文提出了一个案例研究,即将生产者井转换为位于北海的最近发达的秃鹰场中的喷射器井,约60公里的阿伯丁大约60公里。该领域于2001年发现,开发钻井于2005年开始,该领域的第一个生产于2007年初开始。为了满足监测目标,操作员选择了一个永久井下监测系统(PDMS),用于测量压力,温度,流速测量和分布式温度。每个孔都配有三个永久光学传感器:压力/温度传感器,两相流量计和DTS。 PDMS系统旨在适应该领域的扩展:随着新井被添加到该领域,还将用于新井的光学传感器添加到传感器池中,并且相同的表面仪表通过A驱动所有传感器的数据采集过程。多路复用器件。目前,现场有超过30个井,并定期增加新井。 2011年,运营商决定将两台生产者井转换为注射器。第一孔被指定用于注水和第二个用于气体注入。水注射器的转换在2011年10月下旬完成。该转换过程中的一个关键问题是确定注入流体的流速精确以更好地管理注射过程,因为这可能对石油生产经济学产生了很大影响。最初的光学流量计最初已作为两相流量计在秃鹰场的生产模式下安装,但也很好地确定了光学流量计的单相型号在许多水交交配(摇摆)中成功地服务)由其他运营商报告的注射器应用程序。在这种特殊情况下,操作员和设备制造商共同努力,以确保转换过程从流量测量的角度取得成功。符合“智能完成概念”,在将服务从生产者更改为注射器的过程中,流量计和表面仪器中没有硬件或软件更改。唯一的变化与流量计算机中的流体参数文件相关联,该流体参数文件是表面仪器的一部分。该过程还强调了井中光学流量计的真正双向能力,即使在表面上也不能做大多数其他流量测量技术的东西。此外,该过程也与流体的类型无关,是否注入的流体是水或气体的。最近,操作员完成了气体喷射器,喷射过程以低流速开始。目前,流量计仅报告声速,但预计将报告流速,因为气体注入速率增加到流量计的传感阈值以上。这项工作描述了生产者到内注射器转换过程以及与之相关的经验。它还展示了操作员和设备制造商之间的合作如何导致在不影响智能完成的情况下实现服务变更的成功故事。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号