基于地表一致性处理的层析静校正方法改进与应用

Improvement and Application of Tomographic Static Correction Method Based on Surface Consistency Processing

  • 摘要: 针对复杂地形下三维地震勘探数据成像质量受地形起伏、岩性差异影响的问题,提出改进的层析静校正与地表一致性处理技术。核心创新在于融合三维非线性层析反演与自适应算法,精确修正地形及岩性引发的时间误差;采用动态衰减补偿与反褶积方法,优化反射波振幅与相位一致性。实际处理结果显示:单炮记录信噪比从1.5~2.0提升至3.5~4.5(增幅125%~133%),数据主频从45 Hz升至62 Hz(分辨率提升37.8%),剖面信噪比从25.4 dB升至35.4 dB,反射波连续性与能量聚焦效果显著增强。该成果有效提升复杂地质区地震资料成像质量,为高质量处理与地质解释提供可靠技术支撑。

     

    Abstract: Aiming at the problem that the imaging quality of 3D seismic exploration data under complex terrain is restricted by terrain undulations and lithological differences, an improved tomographic static correction and surface consistency processing technology is proposed. The core innovation lies in the integration of 3D nonlinear tomography inversion and adaptive algorithms to accurately correct time errors caused by terrain and lithologies; Dynamic attenuation compensation and deconvolution methods are adopted to optimize the consistency of reflected wave amplitude and phase. The actual processing results indicate that the signal-to-noise ratio of single shot recording is improved from 1.5-2.0 to 3.5-4.5 (with an increase of 125%-133%), the data dominant frequency is improved from 45 Hz to 62 Hz (with a resolution increase of 37.8%), the profile signal-to-noise ratio is improved from 25.4 dB to 35.4 dB, and the continuity of reflected waves and energy focusing effect are significantly enhanced. This result effectively improves the imaging quality of seismic data in complex geological zones, providing reliable technical support for high-quality processing and geological interpretation.

     

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