巨厚变质岩潜山油藏注气开发驱油机理及方案优化
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陈妍(1991—),女,辽宁抚顺人,在读硕士研究生,从事油藏地质方面的研究工作。联系电话:13704044375,E-mail:903647565 @qq.com。

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中国石油重大科技专项“辽河油田原油千万吨持续稳产关键技术研究”(2012E-3005)。


Oil displacement mechanism and scheme optimization of gas injection development in giant thick metamorphic rock buried hill reservoir
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    摘要:

    兴古潜山油藏为巨厚变质岩潜山油藏,由于储层非均质性强、裂缝发育、含油高度达2 300 m,天然能量开发造成产量递减快,而注水开发难以有效补充地层能量,因此合理开发方式优选难度大。针对该油藏双重介质特征,改进实验流程,建立双重介质储层变压焖井实验方法,量化研究基质渗析驱油作用,结合数值模拟研究和现场试验分析,深化注气开发驱油机理认识。研究结果表明,巨厚变质岩潜山油藏注气开发能够发挥重力驱替、气体上浮驱油及基质渗析等作用,可大幅度提高波及体积,并以此为指导开展兴古潜山油藏立体注气开发方案设计,采用顶部注气为主、中下部注气为辅的立体注气方式,在形成重力驱的同时发挥气体上浮驱油的作用,较天然能量开发提高采收率15%。

    Abstract:

    Xinggu buried hill reservoir is a one with giant thick metamorphic rock. It has the characteristics of strong reservoir heterogeneity,developed fractures,up to 2 300 m of oil column,development through natural energy and rapid decline of oil production. It is difficult to optimize reasonable development mode for insufficient formation energy supply by water flooding. In view of dual media characteristics of the oil reservoir,the experiment process was improved,and an experiment method of soaking under various pressures for the dual media reservoir was put forward. Oil displacement by osmosis in matrix was quantified,and oil displacement mechanism of gas injection flooding was studied thoroughly according to numerical simulation research and field test analysis. The research result shows that gas injection flooding in the giant thick metamorphic rock buried hill reservoir can play a role in gravitationally flooding,gas floatation oil displacement and matrix osmosis,and greatly improve the sweep volume,which can act as a guidance for three-dimensional gas injection development design in Xinggu buried hill reservoir. The gas was mainly injected at the top with supplementary injection at the middlelow part. The role of gas floatation oil displacement can be played during gravity drive,and oil recovery efficiency has been enhanced by 15% compared with that of natural energy production.

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陈妍,张玉.巨厚变质岩潜山油藏注气开发驱油机理及方案优化[J].油气地质与采收率,2016,23(1):119~123

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  • 在线发布日期: 2015-12-17