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Optimal Processing of Marine High-Resolution Seismic Reflection (Chirp) Data

机译:海洋高分辨率地震反射(Chirp)数据的优化处理

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摘要

Chirp frequency-modulated (FM) systems offer deterministic, repeatable source-signatures for high-resolution, normal incidence marine seismic reflection data acquisition. An optimal processing sequence for uncorrelated Chirp data is presented to demonstrate the applicability of some conventional seismic reflection algorithms to high-resolution data sets, and to emphasise the importance of a known source-signature. An improvement of greater than 60dB in the signal- to-noise ratio is realised from correlating the FM reflection data with the transmitted pulse. Interpretability of ringy deconvolved data is enhanced by the calculation of instantaneous amplitudes. The signal-to-noise ratio and lateral reflector continuity are both improved by the application of predictive filters whose effectiveness are aided by the repeatability of the Chirp source.
机译:线性调频调频(FM)系统为高分辨率,正入射的海洋地震反射数据采集提供了确定性的,可重复的源签名。提出了针对不相关的Chirp数据的最佳处理序列,以证明某些常规地震反射算法对高分辨率数据集的适用性,并强调已知震源签名的重要性。通过将FM反射数据与发射脉冲相关联,可以实现信噪比大于60dB的改善。通过瞬时幅度的计算,可以增强环形反卷积数据的可解释性。预测滤波器的应用提高了信噪比和侧向反射器的连续性,而预测滤波器的有效性则通过the声源的可重复性得到了帮助。

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