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双重介质油藏基质动用程度及规律
杨胜来1, 李梅香1,2, 王立军3, 康铭辉3,张小霞1
(1.中国石油大学 石油工程教育部重点实验室,北京 102249;2.中国石油塔里木油田公司 勘探开发研究院,新疆 库尔勒 841000;3.中国石油辽河油田公司 沈阳采油厂,辽宁 盘锦 110316)
摘要:
采用数值模拟方法,对双重介质油藏中基质动用机制、程度及影响因素进行研究。针对ECLIPSE数值模拟软件不能给出基质产油量的情况,首次提出用饱和度变化计算基质累积产油量的方法和基质贡献率的概念,研究基质的动用程度,分析块度系数、基质渗透率、裂缝渗透率、注水速度等因素对水驱基质贡献率的影响。结果表明:裂缝发育程度是决定基质动用程度的主要因素,裂缝越发育越能发挥基岩的渗吸排油作用,基质贡献率越高;基质渗透率越高,基质贡献率越高;裂缝渗透率对基质贡献率的影响较小;注水速度越低,越能发挥基质的渗吸排油作用。
关键词:  双重介质油藏  基质贡献率  影响因素  块度系数  注水速度
DOI:10.3969/j.issn.1673-5005.2011.01.019
分类号::TE 34
文献标识码:A
基金项目:国家自然科学基金项目(50874114)
Producing degree and law of matrix in dualporosity reservoir
YANG Shenglai1, LI Meixiang1,2, WANG Lijun3, KANG Minghui3, ZHANG Xiaoxia1
(1.CMOE Key Laboratory of Petroleum Engineering in China University of Petroleum, Beijing 102249, China;2.Exploration and Development Research Institute, Tarim Oilfield Company, PetroChina, Korla 841000, China;3.Oil Production Plant of Shenyang in Liaohe Oilfield Company, PetroChina, Panjin 110316, China)
Abstract:
The matrix producing mechanism, degree and influencing factors in dualporosity reservoir were studied by numerical simulation method. Since the software of ECLIPSE can not calculate the matrix production, a new method for calculating the matrix cumulative oil production using saturation change was proposed. The concept of matrix contribution rate was introduced to research the matrix producing degree. The effect of size index, matrix permeability, fracture permeability, water injection rate on the matrix contribution rate of water flooding was analyzed. The results show that the degree of fracture development is the main factor affecting the matrix producing degree. The more the fracture developed in the reservoir, the more obvious the effect of imbibitions oildrain in matrix and the higher the matrix contribution rate is. The higher matrix permeability, the higher matrix contribution rate is. Fracture permeability has relative small effect on the matrix contribution rate. The lower water injection rate, the better matrix imbibitions oildrain effect is.
Key words:  dualporosity reservoir  matrix contribution rate  influencing factors  size index  water injection rate
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