Co2 Wag试点油藏监测活动

S. Hasan, Manjit Kumar, Moza Abdelrahman, Arit Igogo, Yatindra Bhushan, R. AlSeiari, A. Al Tenaiji
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引用次数: 2

摘要

阿布扎比油田正在进行两个CO2 WAG试点项目。每个导井都有一个水平产油器和两个水平注入器,以及2个垂直导井观察员,以监测远离注入器的洪水锋面的运动。试点项目是根据详细的水库监测计划进行监测的。本文详细论述了与试点监测有关的各项活动和结果。这些井每天都在使用MPFM测试出油率、含水率和GOR。为了校准目的,每季度使用便携式测试分离器来验证速率、含水率和GOR测量值。每季度从试验井收集分离器PVT样品进行PVT分析。此外,每个月还从MPFM附近的采样点从试验井和附近的井收集PVT样品,以监测采出气体中的CO2含量。在线CO2分析仪安装在连接先导井和RDS的地面流线上,以连续测量采出液中的CO2。采出水也取样进行详细的成分分析。通过先导注入器注入不同的气体和水示踪剂,以跟踪注入流体进入先导生产井的运动和突破。对示踪剂进行定期取样和分析。为了监测中试生产井注入二氧化碳的突破情况,还对采出和注入的二氧化碳气体进行了碳氧同位素分析。注入CO2的碳、氧同位素与储层中存在的CO2有很好的差异。为了监测不同地层中水、气饱和度随时间的变化,在观测站中定期进行了一组脉冲中子测井。在注入器和生产设备中进行PLT测井,以检查产出和注入流体沿水平井眼的分布和一致性。一个试验区正在定期进行走开式VSP测量,以监测试验区注入流体的分布情况。本文详细介绍了这些油藏监测活动。碳氧RST测井分析有助于跟踪流体饱和度变化和整个测井层段的CO2运动。观测器的RST测井显示,在储层的不同层间具有良好的扫描效果。通过对采出气中CO2的分析,准确地指出了采出气中CO2的突破时机。通过中试和准产井对注入和产出的CO2同位素分析,得到了很好的支持。示踪分析结果清楚地表明,注入的二氧化碳是从哪里到达生产者的。PLT测井显示,在注入器的水平段,二氧化碳和水的注入具有良好的一致性。所有这些监测活动都为进一步分析和增进对试点的了解提供了良好的数据来源。本文讨论了不同油藏监测工具的实用性,以提高对试点的理解,这将作为在整个地区开发中实施CO2 WAG的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reservoir Monitoring Activities for Co2 Wag Pilots
Two CO2 WAG Pilots are in progress in an Abu Dhabi Oil Reservoir. Each pilot has one horizontal producer and two horizontal injectors along with 2 vertical pilot observers to monitor the movement of flood front away from the injectors. The pilots are being monitored based on a detailed reservoir-monitoring plan. The paper discusses in detail various activities and the results related to the pilot monitoring. The wells are being tested for oil rate, water cut, GOR on a daily basis using MPFM. For calibration purposes portable test separators are used every quarter to validate the rate, water cut and GOR measurements. Separator PVT samples from pilot wells are collected every quarter for PVT analysis. In addition PVT samples are also collected from the pilot wells and nearby wells every month from the sampling point near MPFM to monitor the CO2 content in the produced gas. Online CO2 analyzer is fitted on the surface flow line connecting pilot wells to the RDS to provide continuous measurement of CO2 in the produced fluid. Produced water is also sampled for detailed compositional analysis. Different gas and water tracers have been injected through the pilot injectors to trace the movement and breakthrough of injected fluids into the pilot producers. Sampling and analysis for tracer is carried out on a regular basis. Carbon and oxygen Isotope analysis for produced and injected CO2 gas is also carried out in order to monitor the breakthrough of injected CO2 into the pilot producers. There is a good difference in the carbon and oxygen isotopes of injected CO2 and the CO2 present in the reservoir. To monitor the changes in water and gas saturation with time across different layers a set of Pulsed neutron (RAS) logs are run in the observers on regular basis. PLT logs are run in the injectors and producers to check the distribution and conformance of the produced and injected fluids along the horizontal wellbore. Walk away VSP surveys are being carried out on regular intervals for one pilot to monitor the injected fluids distribution in the pilot area. The paper describes all these reservoir monitoring activities in detail. Analysis of Carbon oxygen RST logs are helpful for tracking fluid saturation changes and CO2 movement across the logged intervals. The RST logs in the observers demonstrate good sweep across different layers of the reservoir. Analysis of CO2 in produced gas has resulted into correctly pointing out the timing of CO2 breakthrough in the producers. It is well supported by the CO2 isotopes analysis for the injected and produced CO2 through pilot producer and nearly producers. The tracer analysis results show clearly the injector from where the injected CO2 has reached the producers. The PLT logs demonstrate good conformance for CO2 and water injection across the horizontal section in the injectors. All these monitoring activities provide a good source of data for further analysis and improved understanding of the pilots. The paper discusses the usefulness of different reservoir monitoring tools for improved understanding of the pilots, which will be used as a basis for implementing CO2 WAG for the full area development.
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