基于地表一致性处理的低信噪比地震资料振幅恢复研究

Research on Amplitude Recovery of Low Signal-to-noise Ratio Seismic Data Based on Surface Consistency Processing

  • 摘要: 针对低信噪比条件下煤层地震反射信息识别精度不足、难以满足储层精细预测需求的行业共性问题,开展基于地表一致性处理的振幅恢复技术研究,选取地表起伏剧烈、浅层低速带发育、干扰类型复杂的毛家川测区为研究靶区,设计并实施折射静校正、自适应面波压制、球面扩散补偿与地表一致性振幅归一化的多级处理流程,通过统一基准面校正、多域干扰波压制与振幅均衡策略,系统消除地表条件、传播路径及吸收衰减对地震波能量的影响。实验结果显示,处理后地震数据信噪比平均提升10~15 dB,煤层反射界面横向连续性与振幅稳定性明显改善,有效提升了地震数据的保真度,为后续构造精细解释、储层分布预测及资源评价提供了可靠的基础数据支撑。

     

    Abstract: In view of the common industry problems of insufficient identification accuracy of coal seam seismic reflection information and difficulty in meeting the requirements of precise reservoir strata prediction under low signal-to-noise ratio conditions, research on amplitude recovery technology based on surface consistency processing is carried out. Selecting the Maojiachuan measurement area with severe surface undulations, shallow layer low-speed zone development, and complex interference types as the research target area, a multi-level processing flow is designed and implemented for refraction static correction, adaptive surface wave suppression, spherical surface diffusion compensation, and surface consistency amplitude normalization. Through strategies of unified reference surface correction, multi-domain interference wave suppression, and amplitude equalization, the influences of surface conditions, propagation paths, and absorption attenuation on seismic wave energy are systematically eliminated. The experimental results indicate that after processing, the signal-to-noise ratio of the seismic data is averagely improved by 10-15 dB, the horizontal continuity and amplitude stability of the coal seam reflection interfaces are obviously improved, and the fidelity of the seismic data is effectively improved, providing a reliable basic data support for subsequent structural fine interpretation, reservoir strata distribution prediction, and resource evaluation.

     

/

返回文章
返回