反射波波形反演技术在西部山前带探区中的应用

    Application of reflection waveform inversion technology to exploration areas in western piedmont zones

    • 摘要: 西部山前带探区作为油气勘探的重要战略接替区,其“双复杂”地表条件(复杂地形与复杂构造)及低信噪比地震资料严重制约了地震成像精度与钻井成功率,亟须针对性的反演技术突破。本文以西部山前带工区为研究对象,该工区地表类型复杂,涵盖山丘、砾石区及雅丹地貌,进一步加剧了地震资料的低品质特征。现有初至波波形反演依赖初至波旅行时拟合,受西部山前带近地表非均质性影响,存在子波一致性差、地表一致性差的两大核心局限,浅层速度建模精度不足,难以依赖超大偏移距数据以及初至波中丰富的低频信息对中深层速度进行反演;反射波波形反演通过挖掘反射波中深层信息,优化目标函数,对低品质资料具有更强的适应性。基于此,本文将反射波波形反演应用于工区,旨在提升双复杂条件下的偏移速度反演精度,为改善西部山前带探区地震成像质量、支撑油气藏精细描述提供技术参考。通过模型和工区测试,反射波波形反演的结果能够应对山前带的低品质数据,提升中深层速度的整体精度。

       

      Abstract: The exploration areas in western piedmont zones have emerged as an important strategic replacement area for hydrocarbon exploration. However, the complex topography and structure ("dual-complexity"), along with the seismic data with low signal-to-noise ratios (SNR), severely restricted the accuracy of seismic imaging and the success rate of drilling. Therefore, it is imperative to optimize inversion technologies. This study focused on the western piedmont zone, an area characterized by complex surface geology, including hills, gravelly zones, and yardang landforms, further degrading the quality of seismic data. The existing first-arrival waveform inversion technique relies on first-arrival traveltime fitting. However, due to the near-surface heterogeneity in the western piedmont zones, this technique faces two core limitations: insufficient wavelet consistency and insufficient surface consistency. This results in inadequate accuracy of shallow velocity modeling and makes it difficult to invert the velocities of intermediate-to-deep layers using ultra-large-offset seismic data and the abundant low-frequency information contained in first-arrival waves. In contrast, reflection waveform inversion (RWI) exhibits higher adaptability to low-quality data by exploiting information of intermediate-to-deep layers in reflected waves and optimizing the objective functions accordingly. Based on this, this paper applied RWI to the survey area, aiming to enhance the accuracy of migration velocity inversion under dual-complexity conditions and to provide technical reference for improving seismic imaging quality and the detailed depiction of hydrocarbon reservoirs in western piedmont zones. Model and field tests demonstrate that the RWI can handle low-quality data in piedmont zones and improve the overall accuracy of velocities in intermediate-to-deep layers.

       

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