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Fine Identification Technology of Stacked Low-order Faults Based on High-density Three-dimensional Seismic Data
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作者 WANGZongjia BASuyu +2 位作者 LIUShengyu LINShuxi WEIXinwei 《外文科技期刊数据库(文摘版)工程技术》 2022年第8期123-128,共6页
Shallow Guantao Group channel sand body oil and gas reservoir is an important part of Shengli Oilfields oil and gas reserves upgrading, and also an important practical position to increase oil reserves and production ... Shallow Guantao Group channel sand body oil and gas reservoir is an important part of Shengli Oilfields oil and gas reserves upgrading, and also an important practical position to increase oil reserves and production for a period of time. For the evaluation of Guantao Group channel sand body type oil and gas reservoirs, accurate description of oil and gas traps is the key. However, affected by the quality of seismic data, the accuracy of structural interpretation of Guantao Group has always been low, especially the large error of the fault system combination of low order faults, which directly led to the deviation of the subsequent comprehensive evaluation of oil reservoirs and target selection. Therefore, it is urgent to summarize and improve a set of targeted structural interpretation scheme of Guantao Group, and realize the oil and gas evaluation of target reservoirs under the guidance of the accurate interpretation mode, so as to improve the quality of exploration and development. Based on this, this paper takes the Guantao Group in Chengdong area of Zhanhua sag in Jiyang sag as an example, aiming at the difficulties of structural interpretation in this area, with the help of Bonan-2021 full node high-density 3D seismic data, effectively uses high-precision coherence, dip angle, ant body, fault coherence enhancement and other technologies, and finely implements the structural pattern of Guantao Group in Chengdong area through hierarchical control mode, so as to provide detailed basic seismic data for the subsequent fine evaluation of oil and gas reservoirs in this area. 展开更多
关键词 Guantao Group fine structural interpretation fracture system Chengdong area
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