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Dispersion analysis of borehole sonic measurements by Hilbert transform and band-pass filters

机译:Hilbert变换和带通滤波器钻孔测量的分散分析

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摘要

Dispersion analysis of waves can reveal important mechanical properties of the formation around the borehole. The traditional dispersion analysis methods are affected by wave modes and aliasing. A new method is developed to perform dispersion analysis of borehole array acoustic logging, which combines the semblance of time-slowness coherence based on differential phase (STC-DP) processing and band-pass filters. Unlike the classic STC method, STC-DP is not sensitive to the window length. Two kinds of band-pass filters, the multiple filter technique and the finite-impulse response filter, are used. The band-pass filters can decompose the waveform signal into a series of waveforms in the frequency-time domain. In contrast to traditional dispersion analysis methods, there is no knowledge of wave modes. The new method can extract multi-mode dispersion curves, especially for the weak wave mode. For most dispersion analysis methods, the aliasing will appear in the high-frequency band when the scanning range of slowness is large enough. The aliased modes might interfere with other true modes, but the aliased modes are quite different from other true modes in the time-slowness grid. Therefore, aliased modes can be removed in the time-slowness grid based on the modal dispersion curves. Synthetic and field examples are used to verify the advantages of the proposed method over traditional dispersion analysis methods.
机译:波浪的分散分析可以揭示钻孔周围地层的重要机械性能。传统的分散分析方法受波动和混叠的影响。开发了一种新方法来执行钻孔阵列声测井的色散分析,其基于差分阶段(STC-DP)处理和带通滤波器相结合了时间易发生的相干性。与经典STC方法不同,STC-DP对窗口长度不敏感。使用两种带通滤波器,多滤波器技术和有限脉冲响应滤波器。带通滤波器可以将波形信号分解为频率时域中的一系列波形。与传统的色散分析方法相比,没有关于波动模式的知识。新方法可以提取多模式色散曲线,尤其是对于弱波模式。对于大多数色散分析方法,当扫描范围足够大时,锯齿将出现在高频带中。别名模式可能会干扰其他真实模式,但别名模式与时间慢化网格中的其他真实模式非常不同。因此,可以基于模态色散曲线在时间慢化网格中除去混叠模式。合成和现场实施例用于验证所提出的方法在传统的分散分析方法上的优点。

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    China Univ Petr State Key Lab Petr Resources &

    Prospecting Beijing Key Lab Earth Prospecting &

    Informat Tech Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources &

    Prospecting Beijing Key Lab Earth Prospecting &

    Informat Tech Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources &

    Prospecting Beijing Key Lab Earth Prospecting &

    Informat Tech Beijing 102249 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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