特种油气藏 ›› 2026, Vol. 33 ›› Issue (2): 12-22.DOI: 10.3969/j.issn.1006-6535.2026.02.002

• 地质勘探 • 上一篇    下一篇

多期地震数据融合处理及对高密度采集设计的启示

侯海龙1, 张庆1, 辛天亮1, 李忠乾1, 李东安2, 吴立青2, 樊卫花2   

  1. 1.中国石化西北油田分公司,新疆 乌鲁木齐 841100;
    2.北京世纪金道石油技术开发有限公司,北京 100088
  • 收稿日期:2025-08-11 修回日期:2026-01-30 发布日期:2026-07-30
  • 作者简介:侯海龙(1978—),男,副研究员,2002年毕业于中国地质大学(武汉)应用地球物理专业,2007年毕业于该校地球探测与信息技术专业,获硕士学位,现从事石油物探相关工作。
  • 基金资助:
    国家示范项目“超深层碳酸盐岩油气地球物理关键技术研究”(2025ZD1402302);中国石化西北油田分公司项目“塔河多层系地震采集观测系统评价及优化研究(国专配套)”(KJD1202609);中国石化西北油田分公司科技项目“超深碳酸盐岩断控储集体井震成像技术研究"(P22150)

Multi-vintage seismic data fusion processing and implications for high-density acquisition design

HOU Hailong1, ZHANG Qing1, XIN Tianliang1, LI Zhongqian1, LI Dongan2, WU Liqing2, FAN Weihua2   

  1. 1. Sinopec Northwest Oilfield Company,Urumqi,Xinjiang 841100,China;
    2. Beijing Century Kingdo Petroleum Technology Development Co.,Ltd.,Beijing 100088,China
  • Received:2025-08-11 Revised:2026-01-30 Published:2026-07-30

摘要: 针对超深层小尺度岩溶缝洞型储层勘探中,常规三维地震资料因面元过大导致绕射波、散射波等有效信号识别困难,难以满足缝洞体精细刻画需求的问题,采用地震数据融合处理技术,以塔河油田艾丁6井区2次三维采集数据为基础,系统分析不同年度数据的极性、相位、时差、频率、能量、方位角及面元网格等地球物理属性差异,应用面元归一化与偏移距融合处理手段,开展了选择性融合处理技术研究。结果表明:对地震数据进行叠前融合可以显著提升空间采样密度,小缝洞体与小断裂识别能力得到改善,融合后覆盖次数提升约20%,信噪比提高10%以上,识别率提升20%;通过选择性融合处理,应用近偏移距资料刻画小地质体,中、远偏移距资料支撑速度分析,可以达到高密度采集与全偏移距成像效果,为地震资料二次采集提供了无需全偏移距采集的退化技术基础。该研究为优化观测系统设计提供了依据,指导二次采集获得适宜偏移距数据,可有效降低采集成本,对推动高效地震勘探具有重要实践意义。

关键词: 塔河油田, 多次采集, 融合处理, 近偏移距高覆盖, 高效地震勘探

Abstract: In exploration of ultra-deep small-scale karst fractured-vuggy reservoirs,conventional three-dimensional seismic data often have overly large bin sizes,which makes it difficult to identify effective signals such as diffraction and scattering waves,and cannot meet the requirements for refined characterization of fractured-vuggy bodies.Therefore,seismic data fusion processing technology was applied.Based on two three-dimensional seismic acquisitions in the Aiding 6 Wellblock of the Tahe Oilfield,geophysical attribute differences between datasets acquired in different years were systematically analyzed,including polarity,phase,time shift,frequency,energy,azimuth,and bin grids.Bin-normalization and offset-fusion processing were applied to develop a selective fusion processing technique.The results show that prestack fusion of seismic data can significantly enhance spatial sampling density and improve recognition capabilities for small fractured-vuggy bodies and small faults;after fusion,coverage increases by approximately 20%,signal-to-noise ratio increases by more than 10%,and recognition rate increases by 20%.Through selective fusion processing,near-offset data are applied to characterize small geologic bodies,while mid-and far-offset data support velocity analysis,thereby achieving effects comparable to high-density acquisition and full-offset imaging.This provides a degraded technical basis for secondary seismic acquisition without full-offset acquisition.This study provides a basis for optimizing observation-system design and guides secondary acquisition to obtain appropriate offset data,which can effectively reduce acquisition costs and has important practical significance for promoting efficient seismic exploration.

Key words: Tahe Oilfield, multiple acquisitions, fusion processing, high-coverage near offsets, efficient seismic exploration

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