Multi-horizon Simultaneous Tracking Based on Dynamic Seismic Waveform Matching

Maoshan Chen, Z. Wan, Changhong Wang, Jingyan Liu, Zhao Chen
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Abstract

Due to the rapid increase in the amount of seismic volumes, the traditional seismic interpretation mode based on manual structure interpretation and single-horizon automatic tracking has encountered many challenges. The seismic interpretation of large or super-large 3-D seismic surveys is facing serious accuracy and efficiency bottlenecks. Aiming to the goal of improving the accuracy and efficiency of seismic interpretation, we propose a dynamic seismic waveform matching technology based on the sparse dynamic time warping algorithm under the guidance of the relative geological time volume theory, and realize multi-horizon simultaneous tracking based on the technology. Has been verified by a model and a real seismic volume, it can realize simultaneous horizon automatic tracking, full spatial tracking and high-density tracking, and can significantly improve the accuracy and efficiency of structure interpretation.
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基于动态地震波形匹配的多视距同步跟踪
由于地震量的迅速增加,传统的基于人工构造解释和单层自动跟踪的地震解释模式受到了许多挑战。大型或超大型三维地震勘探的地震解释面临着严重的精度和效率瓶颈。以提高地震解释精度和效率为目标,在相对地质时体积理论指导下,提出了一种基于稀疏动态时间整形算法的地震动态波形匹配技术,并在此基础上实现了多层同步跟踪。通过模型和实际地震体验证,该方法可以同时实现层位自动跟踪、全空间跟踪和高密度跟踪,可以显著提高构造解释的精度和效率。
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