惠民凹陷复杂断块精细描述技术及应用

2002年 41卷 第No. 3期
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The fine description technique of complex fault blocks and its application in Huimin Depression
1. 中国科学院广一州地球化学研究所,广东广州510000;2. 河南省地质矿产厅第一地质勘查院,河南南阳437000;3. 中国石化胜利油田有限公司物探研究所,山东东营257100
1. Guangzhou Geochemi,try Institute of Chinese Academy of Science,. Guangzhou 51000. China;2. The First Geological Survey Institute of Henan Provimial Bureau of lseology and Mineral Resources.Nanyang137000,China;3. Geophysical Research Institute of SINUPEC Shengli Oilfield Limited Company, Dongying 257100. China
在惠民凹陷老区挖潜和发现隐蔽断块油气藏的研究中,逐步发展和完善了一项综合的复杂断块精细描述技术。该技术包括地震叠后处理,多元综合标定,断块精细构造描述,储层预测及断块综合评价等。地震数据体的叠后处理及多元综合标定是断块精细描述的基础;精细断块构造描述、储层描述及断层封堵分析为断块圈闭评价提供依据;断块综合评价是断块成藏分析的目的和归宿。该技术应用油藏描述方法,精确刻画断块的构造形态,预测储层横向变化,结合钻井、试油、试采及生产等动静态资料,对各构造单元进行断块分类和评价,进而优选钻探目标。
A fine description technique of complex fault blocks has been developed in the efforts to tap potentialities and search subtle fault block pools in the mature areas of Huimin Depression. This technique consists of seismic post-stack processing, multivariate composite calibration, fine description of fault blocks, reservoir prediction and overall evaluation of fault blocks. Post-stack processing of seismic data set and multivariate composite calibration provides a base for fine description of fault blocks. Fine description of fault blocks, reservoir description, and analysis of fault blocking provide evidences for evaluation of fault block trap. Overall evaluation of fault blocks is the ultimate objective of analysis of hydrocarbon-accumulated fault blocks. Based on the structural features and lateral variations of a reservoir obtained by the method, and supplemented with data of drilling, logging, and production test, the type of fault block for each structural unit are classified and evaluated, drilling targets are then determined. Desired results have been obtained by applying the method to the exploration in the central uplift belt of Huimin Depression.
复杂断块; 油藏描述; 地震叠后处理; 多元综合标定; 断层封堵;
complex fault block; reservoir description; post-stack seismic data processing; multivariate composite calibration; fault blockage;