自主流量控制阀在阿曼某成熟油田提高采收率中的现场应用:案例研究

Salim Buwauqi, Ali Al Jumah, Abdulhameed Shabini, Ameera Harrasi, Tejas Kalyani, A. Baqer, Ismarullizam Mohd Ismail, A. Fahmy
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引用次数: 0

摘要

阿曼苏丹国一家最大的石油公司于1980年发现了一个碎屑油藏,并于1985年投产。该油田生产的稠油在油藏条件下为200 - 2000+ cP。超过75%的钻井为水平井,该油田是阿曼苏丹国最大的油田之一。油田面临的挑战包括强含水层、高渗透带/断层以及较大的流体流动性对比,这导致大多数井在开始时就出现了非常高的含水率。目前油田含水率超过94%。本文详细介绍了作业公司在认证、现场试验、现场实施和自动进水控制阀(AICV)技术的性能评估等方面的细致过程,该技术显著降低了产水量,提高了产油量。AICV可以精确识别流过它的流体,并自动关闭高含水或含气饱和度区域,同时刺激健康含油饱和度区域的石油产量。与其他aicd(自动流入控制装置)一样,AICV可以根据油藏条件下的流体特性(如粘度和密度)来区分流过它的流体。然而,由于aicv基于Hagen-Poiseuille和Bernoulli原理的先进设计,其性能优越。本文介绍了一个涉及多学科团队的AICV完井设计工作流程,以及在现有井和新井中评估AICV井性能的一些现场评价标准。自2018-19年以来,该运营商已在该油田使用AICV技术完成了数十口生产井。根据现场性能评估,该技术在加速产油量和减少不需要的水方面具有优势,不仅降低了这些井的运营成本,同时对环境也产生了巨大的积极影响。许多AICV井开始时含水率仅为25- 40%,并且仍然以低含水率和高产油量生产。根据最初的全油田评估,预计AICV井将有助于实现更高的油田采收率。此外,AICV还帮助减轻了处理采出水的设施限制,使作业者能够继续钻井充填水平井。最后,本文还详细讨论了一些井的长期性能结果及其对油田累计采收率的影响,以及进一步优化井性能的经验教训。该技术对提高扫描效率产生了深远的影响,并且通过减少地表的大量产水,在减少碳足迹方面发挥了重要作用。综上所示,AICV技术延长了油田和油井的使用寿命,是经现场验证的最具成本效益的堵水技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fieldwide Application of Autonomous Inflow Control Valve in Increasing the Field Recovery in One of the Matured Fields in the Sultanate of Oman: Case Study
One of the largest operators in the Sultanate of Oman discovered a clastic reservoir field in 1980 and put it on production in 1985. The field produces viscous oil, ranging from 200 - 2000+ cP at reservoir conditions. Over 75% of the wells drilled are horizontal wells and the field is one of the largest producers in the Sultanate of Oman. The field challenges include strong aquifer, high permeability zones/faults and large fluid mobility contrast have resulted that most of the wells started with very high-water cuts. The current field water cut is over 94%. This paper details operator's meticulous journey in qualification, field trials followed by field-wide implementation and performance evaluation of Autonomous Inflow Control Valve (AICV) technology in reducing water production and increasing oil production significantly. AICV can precisely identify the fluid flowing through it and shutting-off the high water or gas saturated zones autonomously while stimulating oil production from healthy oil-saturated zones. Like other AICDs (Autonomous Inflow Control Device) AICV can differentiate the fluid flowing through it via fluid properties such as viscosity and density at reservoir conditions. However, AICVs performance is superior due to its advanced design based on Hagen-Poiseuille and Bernoulli's principles. This paper describes an AICV completion design workflow involving a multi-disciplinary team as well as some of the field evaluation criteria to evaluate AICV well performance in the existing and in the new wells. The operator has completed several dozens of production wells with AICV technology in the field since 2018-19. Based on the field performance review, it has shown the benefit of accelerating oil production as well as reduction of unwanted water which not only reduces the OPEX of these wells but at the same time enormous positive impact on the environment. Many AICV wells started with just 25-40 % water cut and are still producing with low water cut and higher oil production. Based on the initial field-wide assessment, it is also envisaged that AICV wells will assist in achieving higher field recovery. Also, AICV helped in mitigating the facility constraints of handling produced water which will allow the operator continued to drill in-fill horizontal wells. Finally, the paper also discusses in detail the long-term performance results of some of the wells and their impact on cumulative field recovery as well as lessons learned to further optimise the well performance. The technology has a profound impact on improved sweep efficiency and as well plays an instrumental role in reducing the carbon footprint by reducing the significant water production at the surface. It is concluded that AICV technology has extended the field and wells life and proved to be the most cost-effective field-proven technology for the water shut-off application.
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