低渗透裂缝性潜山稠油油藏物理模拟实验研究
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郑文宽(1989—),男,山东东营人,在读博士研究生,从事油藏渗流机理、物理模拟及开发系统工程方面的研究。联系电话: (010)89732260,E-mail:837729983@qq.com。

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国家自然科学基金项目“各向异性裂缝页岩气藏渗流机理与理论研究”(51374222),国家科技重大专项“中东典型碳酸盐岩油藏开发规律及技术政策研究”(2016ZX05032005-002)和“ 基于各向异性的特低渗透油藏井网优化与注采调控技术研究”(2016ZX05013002-001),国家“973”计划“陆相致密油高效开发基础研究”课题五之专题一“致密油藏产能预测方法”(2015CB250905)。


Physical simulation experimental study on low-permeability buried-hill fractured heavy oil reservoir
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    摘要:

    为了研究低渗透裂缝性潜山稠油油藏的渗流机理和开发规律,建立了裂缝性油藏水驱和热水驱相似准则,并以渤海某低渗透裂缝性潜山稠油油藏为原型,根据相似理论,设计并建立与目标油藏相似的1 m×1 m×0.5 m的大尺度物理模型,进行不同井网形式以及不同开发方式下的水驱油实验。通过分析不同时间下的产油量、产水量和油水饱和度等实验数据可知:水平井立体注采井网可充分利用重力分异作用,有效延缓潜山类油藏含水率上升速度;交错注水增大了注采井距,可增大注入水的波及面积;热水驱的注热效果随着注采井距的增大而逐渐变差;注入水中添加表面活性剂可提高裂缝系统的驱油效率,但同时也会降低渗吸作用的效果和基质贡献率。

    Abstract:

    In order to understand the percolation mechanism and development regulation in low-permeability buried-hill fractured heavy oil reservoir,similarity criteria of physical simulation on water flooding and hot water flooding in the fractured reservoirs was established by using similarity theory and flow theory. Taking a low-permeability buried-hill fractured heavy oil reservoir in Bohai Sea as an example,a large scale physical model(1 m×1 m×0.5 m),as analogy of the objective reservoir,was designed to simulate the water flooding experiment in different well patterns and development modes. Analysis results on oil production,water production and water-oil saturation in experiment show that:the stereoscopic horizontal well pattern can give full play to the function of oil-water gravitational differentiation and reduce the rising rate of water cut in the buried-hill reservoir. The staggered well pattern can increase the sweep efficiency of the injected water by increasing the injector-producer distance. Effect of the hot water flooding becomes worse as the injector-producer distance increases.The addition of surfactants into the injected water can increase the oil displacement efficiency in the fracture and lower the imbibition effect and matrix contribution rate.

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郑文宽,刘月田,刘泽华,丁祖鹏.低渗透裂缝性潜山稠油油藏物理模拟实验研究[J].油气地质与采收率,2017,24(3):78~84

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  • 在线发布日期: 2017-03-29