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裂缝性油藏水驱过程中基质的动用程度及基质贡献率

杨胜来 李梅香 陈浩 李凤琴 孙尚勇 李民乐

石油钻采工艺2011,Vol.33Issue(2):69-72,4.
石油钻采工艺2011,Vol.33Issue(2):69-72,4.

裂缝性油藏水驱过程中基质的动用程度及基质贡献率

Study of the producing degree and contribution ratio of matrix in fractured reservoir during water flooding

杨胜来 1李梅香 1陈浩 2李凤琴 1孙尚勇 3李民乐3

作者信息

  • 1. 中国石油大学石油工程教育部重点实验室,北京,102249
  • 2. 塔里木油田公司勘探开发研究院,新疆库尔勒,841000
  • 3. 渤海钻探工程有限公司井下作业分公司,河北任丘,062552
  • 折叠

摘要

Abstract

Seepage process of the fractured dual-porosity media reservoirs is complicated and water cut rises rapidly which are all made it is difficult to develop this kind of reservoirs with water flooding.Aiming at answering the questions, such as whether oil in the matrix can be produced effectively by water flooding, the mechanism, producing degree and laws of matrix development are studied.By using ECLIPSE reservoir simulation software, recovery degree of the fracture and matrix systems and the ration of the production oil in the matrix to the total oil production were analyzed.The influences of the interporosity flow factor, matrix permeability, fractured permeability and water injection rate on the contribution rate of the water flooding in matrix were investigated.Results show that the more developed the fractures, the higher the matrix permeability, and effect ofoil seepage and displacement were easily noticeable which affords benefit for enhancing oil displacement effect.The water drive effects could be greatly improved when fracture developed is better and water injection rate are lower.Variation laws and numerical ranges of the matrix contribution rate and producing degree were obtained.It is recommended that strategy of lower water injection rate for the fractured reservoir should be taken.

关键词

双重介质油藏/基质贡献率/影响因素/窜流系数/注水速度

Key words

dual-porosity media reservoir/ producing degree of the matrix/ influencing factors/ interporosity flow factor/ injection rate

分类

能源科技

引用本文复制引用

杨胜来,李梅香,陈浩,李凤琴,孙尚勇,李民乐..裂缝性油藏水驱过程中基质的动用程度及基质贡献率[J].石油钻采工艺,2011,33(2):69-72,4.

基金项目

国家自然科学基金项目"超深层油气藏岩石物性垂向分布规律及渗流特征研究"(编号:50874114)资助. (编号:50874114)

石油钻采工艺

OA北大核心CSCDCSTPCD

1000-7393

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