通过动态匹配进行分层地震数据插值

GEOPHYSICS Pub Date : 2024-05-21 DOI:10.1190/geo2023-0249.1
Yingjie Xu, Siwei Yu, Lieqian Dong, Jianwei Ma
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引用次数: 0

摘要

插值是地震数据处理的关键步骤。地震道中的间隙会导致相应的 F-K 频谱出现严重的空间混叠现象。有规律间隔的间隙造成的混叠与实际数据的 F-K 频谱相似。现有的混叠插值算法一般假定地震事件是线性的,无法处理非稳态事件。针对这一缺陷,我们提出了一种利用动态匹配的新的地震数据处理插值方法。首先,我们使用局部仿射区域动态时间扭曲算法匹配两个相邻的地震道。然后,计算两个地震道之间的局部斜率。最后,我们利用局部斜率信息对定期缺失的地震数据进行线性插值。我们在合成地震数据集和野外地震数据集上对所提出的方法进行了测试。插值结果表明,与传统的 Spitz 和基于小震的方法相比,所提出的方法具有更好的抗锯齿能力和计算效率。此外,该方法还可用于不规则采样地震数据的插值,以及地震数据的同步插值和去噪。
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Dealiased seismic data interpolation by dynamic matching
Interpolation is a critical step in seismic data processing. Gaps in seismic traces can lead to severe spatial aliasing phenomena in the corresponding F-K spectra. The aliasing caused by regularly spaced gaps has similar F-K spectra as those of the actual data. Existing dealiasing interpolation algorithms generally assume that seismic events are linear, and cannot handle non-stationary events. To address this shortcoming, we proposed a novel dealiased seismic data interpolation approach using dynamic matching. First, we matched two adjacent seismic traces using the local affine regional dynamic time-warping algorithm. Subsequently, we calculated the local slope between two seismic traces. Finally, we performed linear interpolation on the regularly missing seismic data using local slope information. The proposed approach was tested on both synthetic and field seismic datasets. The interpolation results showed that the proposed approach has a better anti-aliasing ability and computational efficiency than the traditional Spitz and seislet-based approaches. Additionally, this method can also be applied to interpolate irregularly sampled seismic data and for simultaneous seismic data interpolation and denoising.
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