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Application of high-precision 3D seismic technology to shale gas exploration: A case study of the large Jiaoshiba shale gas field in the Sichuan Basin

机译:高精度3D地震技术在页岩气勘探中的应用-以四川盆地焦石坝大型页岩气田为例

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The accumulation pattern of the marine shale gas in South China is different from that in North America. The former has generally thin reservoirs and complex preservation conditions, so it is difficult to make a fine description of the structural features of shale formations and to reflect accurately the distribution pattern of high-quality shale by using the conventional 2D and 3D seismic exploration technology, which has an adverse effect on the successful deployment of horizontal wells. In view of this, high-precision 3D seismic prospecting focusing on lithological survey was implemented to make an accurate description of the distribution of shale gas sweet spots so that commercial shale gas production can be obtained. Therefore, due to the complex seismic geological condition of Jiaoshiba area in Fuling, SE Sichuan Basin, the observation system of high-precision 3D seismic acquisition should have such features as wide-azimuth angles, small trace intervals, high folds, uniform vertical and horizontal coverage and long spread to meet the needs of the shale gas exploration in terms of structural interpretation, lithological interpretation and fracture prediction. Based on this idea, the first implemented high-precision 3D seismic exploration project in Jiaoshiba area played an important role in the discovery of the large Jiaoshiba shale gas field. Considering that the high-quality marine shale in the Sichuan Basin shows the characteristics of multi-layer development from the Silurian system to the Cambrian system, the strategy of shale gas stereoscopic exploration should be implemented to fully obtain the oil and gas information of the shallow, medium and deep strata from the high-precision 3D seismic data, and ultimately to expand the prospecting achievements in an all-round way to balance the high upstream exploration cost, and to continue to push the efficient shale gas exploration and development process in China.
机译:华南地区的页岩气成藏模式与北美不同。前者储层普遍稀薄,保存条件复杂,因此难以通过传统的2D和3D地震勘探技术对页岩地层的构造特征进行精细描述,并准确反映高质量页岩的分布模式,这对水平井的成功部署有不利影响。有鉴于此,实施了以岩性调查为重点的高精度3D地震勘探,以准确描述页岩气甜点区的分布,从而获得商业化的页岩气生产。因此,由于四川盆地东南部Fu陵焦石坝地区地震地质条件复杂,高精度3D地震采集观测系统应具有方位角宽,迹线间隔小,褶皱高,纵横向均匀的特点。在构造解释,岩性解释和裂缝预测方面,页岩气的覆盖范围和分布范围很广,可以满足页岩气勘探的需求。基于这一想法,焦石坝地区首个实施的高精度3D地震勘探项目在大型焦石坝页岩气田的发现中发挥了重要作用。考虑到四川盆地优质海相页岩表现出志留系至寒武系的多层发展特征,应采取页岩气立体勘探策略,以充分获取浅层油气信息。高精度3D地震数据获取中,深层地层,最终全面扩大勘探成果,以平衡上游高昂的勘探成本,并继续推动中国高效的页岩气勘探开发进程。

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