改进伪跨置陶瓷筛管安装方法,实现轻、鲁棒的通油管防砂技术在成熟气田竞争优势中的应用

Rahman Setiadi, E. Dharma, S. Jackson, B. Gundemoni, Sakti Dwitama, K. Umar, Edy Suprapto, Gany Gunawan, A. S. Ashfahani, Zulmi Ramadhana, Triantoro Adi Nugroho, Edo Rizky Australianda
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Mahakam subsurface sand controls were classified into gravel pack, open hole stand-alone screen, chemical sand consolidation (SCON), and thru-tubing metal screen. These also respectively account for the highest to the lowest of operational investment, associated production contribution, and its reliability.\n Thru tubing screen methodology in cased-hole application showed weakness by plugging and erosion issue resulting on minimum utilization as lowest end subsurface sand control means. Several normative elements factored into it, with the root cause of screen placement. It was avoided to install metallic screen in front perforation due to direct jetting during the natural sand packing (NSP) process, causing an installation at slightly above perforation with the absence of stable NSP and screen size selection complexity. Thru-tubing screen with higher strata of material, silicon carbide or ceramic, was selected as a pioneer on new installation philosophy to tackle erosion issue. It was combined with the developed Mahakam sand grain size map as a screen size selection guideline. A confidence pseudo-straddle thru-tubing ceramic screen (TTCS) installation campaign in front of perforation interval was explored on swamp (Tunu) and offshore (Peciko) gas wells. This technique adopts open hole SAS with retrievable concept optimizing slickline intervention.\n Perfection of the techniques is a process that continues. 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引用次数: 0

摘要

Mahakam区块为印尼的油气生产提供了超过40年的产能支持。目前,随着其成熟周期的变化,成熟油田面临着边际储量指标急剧下降的挑战,其中疏松砂岩储层是需要防砂的主要因素之一。此外,未来海上平台的发展也凸显了轻型部署和防砂的紧迫性。在深入研究方法论时,必须重新审视现有的技术以及当前的技术必须提供什么。Mahakam地下防砂分为砾石充填、裸眼独立筛管、化学固砂(SCON)和过油管金属筛管。这些也分别占运营投资的最高和最低,相关的生产贡献,以及它的可靠性。在套管井应用中,通过油管筛管方法存在堵塞和侵蚀问题,导致其作为最低端的地下防砂手段的利用率最低。有几个规范因素在其中,这是屏幕放置的根本原因。由于在自然填砂(NSP)过程中直接喷射,避免在射孔前安装金属筛管,导致安装在射孔略高于射孔的位置,没有稳定的NSP,筛管尺寸选择也很复杂。采用碳化硅或陶瓷等更高地层材料的通油管筛管被选为解决腐蚀问题的新安装理念的先驱。它与开发的Mahakam砂粒度图相结合,作为筛管尺寸选择指南。在沼泽(Tunu)和海上(Peciko)气井上,对射孔段前的伪跨接陶瓷筛管(TTCS)安装进行了研究。该技术采用了具有可回收概念的裸眼SAS,优化了钢丝绳干预措施。技术的完善是一个持续的过程。然而,根据目前对2020年至2021年的井安装的研究和试验结果,取得了积极的成果:操作简单,HSE风险最小,通过降低筛管侵蚀风险,无砂生产可以解决砂粒分布广泛的高度松散油藏。与分配的SCON预算相比,三角洲平均节约成本66%,海上平均节约成本76%,与之前的过油管金属筛相比,累计产气量提高了200%以上。在几次安装中,该装置的性能超过了SCON的平均产量和现场气速限制,在非活动井的安装中,该装置的所有回收成功率都达到了100%,当需要使用SCON进行补救时,该装置不会对储层造成损害,该装置的概念已在大斜度和独特的完井配置中得到了验证。这一启示增强了人们对评估技术和安装理念的信心。这一举措将使Mahakam边缘砂质油藏的生产成为可能,同时作为一种坚固、轻便的防砂解决方案,将得到更广泛的应用。
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Improved Screen Installation Method by Pseudo-Straddled Ceramic Screen Towards Light and Robust Thru Tubing Sand Control Technique in Competitive Edge of Mature Gas Field Mahakam
Mahakam block has supported Indonesia's Oil and Gas production with over 40 years of deliverability. Presently, along with its maturity cycle, comes the challenge of a steeply declining matured field with indicators of marginal reserves, included unconsolidated sand reservoirs as one of the main contributors which required sand control. In addition, future offshore platform development emerged the urgency of light deployment and robust sand control. Deep dive into the methodology, it was mandatorily to revisit what techniques available on the shelves and what is the current technology has to offer. Mahakam subsurface sand controls were classified into gravel pack, open hole stand-alone screen, chemical sand consolidation (SCON), and thru-tubing metal screen. These also respectively account for the highest to the lowest of operational investment, associated production contribution, and its reliability. Thru tubing screen methodology in cased-hole application showed weakness by plugging and erosion issue resulting on minimum utilization as lowest end subsurface sand control means. Several normative elements factored into it, with the root cause of screen placement. It was avoided to install metallic screen in front perforation due to direct jetting during the natural sand packing (NSP) process, causing an installation at slightly above perforation with the absence of stable NSP and screen size selection complexity. Thru-tubing screen with higher strata of material, silicon carbide or ceramic, was selected as a pioneer on new installation philosophy to tackle erosion issue. It was combined with the developed Mahakam sand grain size map as a screen size selection guideline. A confidence pseudo-straddle thru-tubing ceramic screen (TTCS) installation campaign in front of perforation interval was explored on swamp (Tunu) and offshore (Peciko) gas wells. This technique adopts open hole SAS with retrievable concept optimizing slickline intervention. Perfection of the techniques is a process that continues. However, based on the current study and trial results on wells installation throughout 2020 to 2021, positive results were achieved: Operation simplicity with minimum operation HSE risk, Sand free production delivery addressing highly unconsolidated reservoir with widely distributed sand grain by mitigating the risk of screen erosion, The average cost savings were 66% in delta and 76% in offshore compared to allocated SCON budget, Cummulative gas deliverability increased by more than 200% compared to previous thru-tubing metal screen performance, Performance exceeded average SCON production rate and in-situ gas velocity limit at several installations, The installation method had a 100% retrievability success ratio from all retrieval attempts on inactive wells installation, It had no damaging effect to the reservoir when remedial by SCON was required, The installation concept adoption has been proven on highly deviated and unique completion configurations. This enlightenment boosted confidence in both the assessment technique and installation philosophy. This initiative would enable the production of Mahakam marginal sandy reservoir while sparking to a wider application as an alternative robust and light sand control solution.
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