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Learnings from the Grand Rapids Field Trial of Tubing Deployed Inflow Control Devices for SAGD Application

机译:从巨大急流场试验的朗急流局试验,用于SAGD应用的管道部署流入控制装置

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Field trials of tubing deployed Inflow Control Devices (ICDs) were conducted at the Grand Rapids SAGD Pilot from 2014 to 2016. The objective of the trials were to evaluate the flow performance of ICDs in a tubing deployed completion and assess improvements to thermal conformance. Key performance metrics were established to monitor changes in well performance, including production rates, thermal conformance, steam production and Steam to Oil Ratio (SOR). A comprehensive study was undertaken after the trials concluded. Multiple approachs were taken including analytical representations and simulations. The purpose of the study was to improve understanding of the underlying physics that govern flow and thermodynamic behavior of ICDs. The study specifically addressed restriction effects for various inflow conditions, steam flashing effects through the devices and heat exchange effects associated with the completion design. The results of the study identify some design principles that may be used for future application of ICDs in SAGD wells. Well Pairs 1 and 2 at the Grand Rapids Pilot project were used to test different ICD completions in a SAGD well pair. The Well Pair 1 field trial began first and lasted seven months. Learnings from the Well Pair 1 trial were extended to the Well Pair 2 trial which lasted 18 months. Flowing and shut-in temperature profiles were collected to understand near wellbore conditions and 4D seismic was used to ascertain changes to thermal conformance in the reservoir. Analytical and numerical models were developed to match field observations from the trial. Results from the field trial provided unique learnings with respect to the benefits that tubing deployed ICD systems may provide for SAGD wells. Changes in conformance and temperature distribution in the lateral sections were noted with little to no uplifts in oil rates or SOR. Once the trials were complete, all ICDs were removed from both well pairs and subject to visual inspections. Thereafter, a sample population of devices underwent a series of tests to evaluate mechanical integrity. The tests also characterized any changes to ICD flow relationships before and after the trial. Inspections of the devices post-operation provided crucial learnings on the mechanical integrity of such systems.
机译:从2014年至2016年开始,在大急流索德飞行员在大急流Sagd Pilot进行了管道部署的流入控制装置(ICD)的现场试验。试验的目的是评估ICDS在管道部署完成中的流动性能,并评估热符合的改进。建立了关键性能指标,以监测井性能的变化,包括生产率,热量符合,蒸汽生产和蒸汽比(SOR)。在审判结束后进行了全面的研究。采取了多种方法,包括分析表示和模拟。该研究的目的是提高对管理ICD的流量和热力学行为的潜在物理学的理解。该研究专门针对各种流入条件解决了限制效应,通过设备蒸汽闪烁效应和与完成设计相关的热交换效果。研究结果确定了一些设计原则,可用于将来在SAGD井中应用ICD。 Grand Rapids Pilot项目的良好对1和2用于在SAGD井对中测试不同的ICD完成。一对井1场审判开始首先并持续七个月。一对良好的一对审判的学习延伸到持续18个月的一对试验。收集流动和关闭温度型材以了解井眼条件附近,并且4D地震用于确定储层中热符合的变化。开发了分析和数值模型以与试验相匹配现场观察。现场试验的结果提供了关于管道部署的ICD系统可能提供SAGD井的好处的独特学习。横向部分中的一致性和温度分布的变化仅对油速或SOR升高而略微升高。一旦试验完成,所有ICD都从两者对中移除并受视觉检查。此后,设备的样本群进行了一系列测试以评估机械完整性。测试还表征了在试验之前和之后的ICD流动关系的任何变化。检验设备后的后手术提供了对这种系统的机械完整性的关键学习。

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