凝析气藏注储CO2可行性评价:机理研究与实例分析

Ying Jia, Shi Yunqing, Lei Huang, Jin Yan, Lei Sun
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引用次数: 0

摘要

YKL凝析气藏是中国最大的凝析气藏之一,已经开发了10多年。目前,分段、优化生产速度和水平井钻井相结合已成为经济开发蕴藏巨大的YKL凝析气的关键。然而,由于毛细圈闭和水侵,初级采收率仍然很低。虽然首次枯竭可能导致天然气采收率低,但二氧化碳驱油为提高采收率提供了一个有希望的选择。本文的目的是验证和评价超临界CO2对凝析气藏提高采收率的效果,分析CO2提高采收率(CO2 EGR)的可行性。首先,提出了高温超临界CO2混合气凝析相体系相行为实验方法和相平衡评价方法。还报道了一种独特的相行为现象。在实验的基础上,对凝析气藏CO2驱油机理进行了分析和澄清。最后,进行了一系列数值模拟工作,通过不同的策略(包括CO2注入速度、注入成分和注入时间),在最低的CO2突破下实现天然气采收率最大化,这是一种有效而经济的手段。同时计算了不同策略下的CO2储存量。结果表明,通过形成两流体间相、保持储层压力、驱气“垫层”、控制水侵等措施,CO2注入可获得较高的采收率。所有策略对天然气产量都有中等到显著的影响。注采比的控制需要在压力瞬变和对产油层的CO2突破之间取得平衡,以获得最大的产气量。不同的注入压力对提高产气量有积极的作用。数值模拟结果表明,气藏采收率提高了10%左右。总二氧化碳储存量将在HCPV的30-40%左右。研究表明,CO2驱油是一种技术上有前景的方法,可以在大量减少温室气体排放的同时回收大量凝析气。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Feasibility Appraisal for CO2 Injection and Storage in Condensate Gas Reservoir: Mechanism Studies and Case Analysis
The YKL condensate gas reservoir is one of the biggest condensate gas reservoirs in China and has been developed more than 10years. At present, the combination of subdivision layer, production speed optimization and horizontal well drilling has been the key to economically unlocking the vast reserves of the YKL condensate gas. The primary recovery factor, however, remains rather low due to high capillary trapping and water invasion. While primary depletion could result in low gas recovery, CO2 flooding provides a promising option for increasing the recovery factor. The objective of this work is to verify and evaluate the effect supercritical CO2 on enhancing gas recovery and analyze the feasibility of CO2 enhance gas recovery (CO2 EGR) of condensate gas reservoir. Firstly, novel phase behavior experimental procedures and phase equilibrium evaluation methodology for gas-condensate phase system mixed with supercritical CO2 with high temperature were presented. A unique phase behavior phenomena was also reported. Then, CO2 floodingmechanism in condensate gas reservoir was analyzed and clarified based on experiments. Finally, a series of numerical simulation work were conducted as an effective and economical means to maximize natural gas recovery with the lowest CO2 breakthrough by varying strategies, including CO2 injection rate, injection composition, andinjection timing. Meanwhile the CO2 storage volumes of different strategies were calculated. The results show that higher gas recovery factor can be achieved with CO2 injection through appearing interphase between two fluids, maintaining reservoir pressure, driving gas like "cushion" and controlling water invasion. All strategies have moderate to significant effects on gas production. The control of injection and production ratio needs to be balanced between pressure transient and CO2 breakthrough over the producer to obtain the maximum gas production. The varying injection pressure shows a positive effect of enhancing gas production. Numerical simulation indicated that the recovery of gas reservoir was improved by around 10 percent. The total CO2 storage would be around 30-40% HCPV. The research showed that CO2 flooding presents a technically promising method for recovering the vast condensate gas while extensively reducing greenhouse gas emissions.
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