裂缝性油藏渗流特征及驱替机理数值模拟研究
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郑浩,男,工程师,硕士,从事油气田开发及油藏工程研究。联系电话:(022)25804912,E-mail:zhenghao2@cnooc.com.cn。

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国家科技重大专项子课题“海上油田丛式井网整体加密及综合调整油藏工程技术应用研究”(2011ZX05024-002-007)


The numerical simulation study on percolation characteristics and displacement mechanism of fractured reservoir
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    摘要:

    通过双重介质数值模拟,详细研究了裂缝性油藏的渗流特征与驱替机理,并对开发效果的影响进行了敏感性分析。结果表明:岩石应力敏感性是制定裂缝性油藏开发策略的关键,它决定着开发方式、油藏压力保持能力及基质系统与裂缝系统采收率;基质系统与裂缝系统间的窜流作用在边底水能量充足或人工注水保压开发情况下很难发生,仅在降压开发过程中显现;对于基质系统,毛管压力渗析作用是最主要的渗流特征及驱替机理,采收率可达4%以上;对于裂缝系统,油水流动近似管流,采收率可达75%以上;重力作用在裂缝性油藏开发过程中虽客观存在,但作用较微弱。基质系统与裂缝系统油水相渗曲线形态的选取仅影响油水两相渗流能力,对采收率影响很小。

    Abstract:

    The author has studied the percolation characteristics and displacement mechanism of fractured reservoir by dual-media numerical simulation in detail, as well as sensitivity analysis of the impact of development effect. The results show that the rock stress sensitivity is the key to decide fractured reservoir development strategy. It decides the development model, the ability to maintain reservoir pressures and the recovery of matrix system and fracture system. The crossflow between matrix system and fracture system is very difficult to occur in natural or artificial water energy that sufficient to maintain reservoir pressure. It only appears in the development process of reducing reservoir pressure. Regarding the matrix system, capillary pressure dialysis is the most important percolation characteristics and displacement mechanism. Its recovery ratio may reach over 4%. Regarding the fracture system, the displacement process depends on the external driving pressure differential and is characteristic of pipe flow. Its recovery ratio may reach over 75%. Gravity exists objectively but is rather weak. In process of numerical simulation of fractured reservoir, the oil-water relative permeability curve shape of matrix system and fracture system mainly affects the rise law of water cut, but little on recovery.

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郑浩,苏彦春,张迎春,王月杰.裂缝性油藏渗流特征及驱替机理数值模拟研究[J].油气地质与采收率,2014,21(4):79~83

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  • 在线发布日期: 2015-06-07