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《Natural Gas Industry》 2006-11
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Wu Furong, Li Yalin, Wang Yuxue, Deng Yan, Xiong Yan (Geophysical Exploration Company, CNPC Sichuan Petroleum).  
Accurate prediction of fractured zones is of great significance to exploration and development of tight reservoirs. The multi-scale of fractured zone and the ambiguity caused by lithologic variation increase the difficulty of prediction of fractured zones. Sedimentary facies analysis and prediction of spatial distribution of reservoirs are performed by integrating geologic, well logging, and seismic data. Several post-stack fracture detection methods, such as reflection strength, edge detection, and coherence technique, are used to predict macro-scale fractured zones in reservoir distribution areas. Based on the broad-azimuth 3D P-wave data acquired in GSM area, the separate-azimuth processing method suitable for fracture detection is used to obtain high quality data of six azimuths. Then the pre-stack fracture detection methods such as the azimuth difference of P-wave frequency attribute is used to predict micro-scale directional fractured zones. The macro and micro fractured zones in reservoirs can be well predicted by integrating the pre- and post-stack fracture detection methods, thus lowering the ambiguity caused by lithologic variations.
【CateGory Index】: P631.4
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