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An introduction to seismic exploration of the Micang-Dabashan foothill belt in the Sichuan Basin

机译:四川盆地蒙康加山山麓皮带地震勘探概论

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摘要

Geologic studies indicate that the platform-margin reef-shallow facies in Permo-Triassic marine strata in the Micang-Dabashan foothill belt in the Sichuan Basin are favorable exploration targets for oil and gas exploration. However, the typical dual-complexity problem (complex surface condition and subsurface structure) brings a great challenge for seismic technology targeting of those potential oil and gas reservoirs. To overcome this problem, varieties of advanced seismic acquisition and processing methods have been used to improve the imaging quality of piedmont seismic data since 2000. Some improvements have been achieved: The reflection waves from the far offset and deep layer can be acquired in shot gathers from limestone outcropped areas, and the signal-to-noise ratio (SIN) of reflection and diffraction waves in the stack section has been enhanced significantly so as to reveal amounts of valuable geologic information. The resolution and the S/N of seismic migration imaging for the strong fold zone in marine strata have been improved partially, so that the structure of the step-fault zone and the enveloping of gypsum rock are clearer than those revealed by the old seismic section. Even so, actual drilling data demonstrate that the subsurface structures of the foothill belt are far more complex than those revealed by the current seismic imaging results. Therefore, postdrilling evaluation for the validity of seismic techniques implemented in the Nanjiang and Znenba piedmont zone has been carried out. The results indicate that the current acquisition scheme and processing workflow cannot completely fulfill the requirements of high-precision velocity modeling and migration imaging of complex structures (such as footwalls of thrust fault and small-scale fault blocks) in the piedmont zone, especially when the rugged surface and the widespread limestone outcrop appear simultaneously. Finally, we have developed some potential needs of seismic theories and techniques in the foothill belt, including seismic wave propagation, acquisition, and processing technology.
机译:地质研究表明,四川盆地麦克达山山山麓皮带跨越式海洋地层的平台 - 利润珊瑚礁浅层面对石油和天然气勘探的良好勘探目标。然而,典型的双重复杂性问题(复杂的表面状况和地下结构)为那些潜在的石油和气体储层的地震技术瞄准了巨大挑战。为了克服这个问题,自2000年以来,已经用来改善皮埃蒙特地震数据的成像质量的品种。已经实现了一些改进:可以在射击收集中获取来自远偏移和深层的反射波从石灰石外剥离区域,并且堆叠部分中反射和衍射波的信噪比(SIN)已经显着提高,以揭示有价值的地质信息。用于船闸中的强折叠区的地震迁移成像的分辨率和S / N部分地提高了部分,使得阶梯式断层区的结构和石膏岩的包络比旧地震截面所显示的。即便如此,实际的钻井数据表明山麓带的地下结构比当前地震成像结果透露的那些更复杂。因此,已经进行了南江和Znenba Piedmont区实施的地震技术有效性的介绍评估。结果表明,当前采集方案和处理工作流程不能完全满足皮埃蒙特区中复杂结构的高精度速度建模和迁移成像的要求,特别是当坚固的表面和广泛的石灰石露头同时出现。最后,我们已经开发了山麓皮带中地震理论和技术的一些潜在需求,包括地震波传播,采集和加工技术。

著录项

  • 来源
    《Interpretation》 |2018年第4期|共12页
  • 作者单位

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

    Sinopec Explorat Co Chengdu Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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