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Multi-datum based estimation of near-surface full-waveform redatuming operators

机译:基于多基准的近地表全波形重算算子估计

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摘要

A complex near surface can impact the quality of land data, despite the fact that the geology below the near surface complexities can be laterally smooth. Redatuming with operators based on a high-frequency parameterization in terms of traveltimes and simple geometric spreading factors will fall short if there are large lateral and vertical variations in propagation velocity and buried anomalies in the near surface layer. Recently, a method was introduced that can estimate the involved redatuming operators in a full-waveform sense. Application to synthetic data shows an uplift to the redatuming quality, but residual imprint is still observed. In this paper an extension is introduced that estimates redatuming operators based on two datum reflections simultaneously.In this way the full-waveform estimation process becomes more robust and shows another level of improvement for synthetic data. This conclusion is further amplified by the results obtained on field data from an area with a severe near-surface problem.
机译:尽管近地表复杂性以下的地质在横向上是平滑的,但复杂的近地表可能会影响土地数据的质量。如果传播速度和近地表层的埋藏异常存在较大的横向和垂直变化,则基于运行时间和简单的几何扩展因子的基于高频参数化的算符重新基准将不足。最近,引入了一种可以在全波形意义上估计所涉及的重新计算算符的方法。应用于合成数据显示出重新基准质量的提升,但是仍然观察到残留的印记。本文介绍了一种扩展功能,该扩展功能可同时基于两个基准反射来估计重新计算算符。这样,全波形估计过程将变得更加健壮,并显示出合成数据的另一个改进水平。从具有严重近地表问题的区域的现场数据获得的结果进一步放大了这一结论。

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