Abu Dhabi巨型海上碳酸盐岩油田:在大位移水平分支井中实施牛头增产和首次实时光纤监控,以最大限度地提高油藏采收率

Rajes Sau, Ahmed Kiyoumi, Alaa Amin, Gladwin Correia, A. Barghouthi, Alqasem Almheiri, Edward Jason Wheatley, Y. Ali, B. Seabrook, Renzo Angeles, C. Shuchart
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引用次数: 1

摘要

Abu Dhabi海上的一个巨大的碳酸盐岩油田正在进行重新开发,该油田使用了可达20,000英尺的大位移水平分支,裸眼无胶结尾管,从人工岛屿钻井。在单位开发成本方面,长水平井具有显著的盈利能力;然而,确保整个分支的有效增产以最大限度地提高油藏采收率是至关重要的。此前,SPE171800推出了一种创新的长裸眼水平完井尾管设计,即有限进入尾管(LEL),可通过扩顶技术实现高速率的侵略性增产。本文将介绍裸眼完井中超过5条长度达数公里的LEL分支的现场增产效果,展示LEL增产在加速生产和最大限度提高油藏采收率方面的影响。在低渗透岩石中完成了几口LEL水平井,以实现高速率的井口基质增产。ExxonMobil的专有软件用于设计适合用途的LEL,使酸注入沿水平段的一致性,同时通过沿水平段分布不均匀的尾管基础管的3mm / 4mm孔进行高速酸喷射,形成深虫孔,并与油/水膨胀封隔器分隔。通过使用安装在adnoc船上的模块化设备包,利用独特的机制将包组件锁定在安装在船甲板上的框架上,从而实现了增产作业的执行。该增产方案由6×2000HHP泵组成,在10000psi下,泵速高达60bpm。液体添加剂系统、140桶的垂直混合罐和超过19万加仑的原酸储罐都是全自动的,可以按照所需的速率、浓度和配方进行酸混合和泵送。为了证明酸化的有效性和整个分支段的有效增产,使用了实时光纤监控技术(DTS-DAS)。记录的热和声学剖面为LEL设计提供的机械导流效果提供了定性和定量测量。这些数据将有助于在未来的油田开发中,对最大油藏接触井的下完井设计模型进行验证和微调。随着井的性能和实时监测,生产/注入测井数据证明了整个分支的有效增产。本文介绍了低渗透油藏大位移水平井利用LEL完井井口增产成功的现场动态。本文还介绍了光纤- dts - das在增产和增产后注水过程中的实时监测的首次应用。先进的监测数据表明,在大位移水平裸眼水平井中,LEL完井和增产是成功和有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bullhead Stimulation and First Real-Time Fiber-Optic Surveillance in Extended-Reach Horizontal Laterals to Maximize Reservoir Recovery in a Giant Offshore Carbonate Oil Field Abu Dhabi
A giant carbonate field offshore Abu Dhabi is being redeveloped using extended-reach-horizontal-laterals up to 20,000 ft with open hole un-cemented liner, drilled from artificial islands. Long horizontal wells provide significant profitability in unit development cost; however it is critical to ensure effective stimulation of the complete lateral to maximize reservoir recovery. Earlier, SPE171800 introduced an innovative liner design for long open hole horizontal completions, namely Limited-Entry Liner (LEL) that enables high rate aggressive stimulation by bullheading technique. This paper will present the field stimulation results of more than five LEL laterals ranging several-kilometers in open hole completions, demonstrating the impact of LEL stimulations in accelerating production and maximizing reservoir recovery. Several LEL horizontal wells were completed in low-permeability rock to enable high rate bullhead matrix stimulation. ExxonMobil proprietary software is used to design fit-for-purpose LEL that enables acid injection conformance along the lateral and at the same time creates deep-wormholes by high-velocity acid-jets through 3-mm/4-mm holes in liner base-pipe distributed non-uniformly along the lateral, compartmentalized with oil/water-swellable-packers. The execution of the stimulation campaign was made possible through the use of modularized-equipment packages installed on an ADNOC-vessel, utilizing a unique mechanism that locks the package components to frames installed to the vessel-deck. The stimulation package consists of 6×2000HHP pumps delivering up to 60bpm at 10,000psi. The liquid-additive system, 140bbl vertical mixing tank and more than 190,000gallon raw-acid storage tanks are fully automated to enable acid mixing and pumping on the fly at the desired rates, concentrations and recipes. In order to demonstrate the effectiveness of acid placement and effective stimulation across the entire lateral, real-time Fiber-Optic surveillance techniques (DTS-DAS) were utilized. The recorded thermal and acoustic profiles provided a qualitative and quantitative measurement of the effectiveness of the mechanical diversion delivered by the LEL design. These data will help in corroborating and fine-tuning the model used in lower completion design of maximum reservoir contact wells in future field development. Along with well performance and real-time surveillance, production/injection logging data demonstrates effective stimulation of the entire lateral. This paper presents field performance results from successful bullhead stimulation of extended reach horizontal well completed with LEL in low-permeability-reservoir. This paper also presents our first application of fiber-optic-DTS-DAS real-time-surveillance during stimulation and post-stimulation water injection. Advanced surveillance data demonstrated the success and effectiveness of the LEL completion and stimulation in extended-reach long horizontal open hole laterals.
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