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Retrieving virtual reflection responses at drill-bit positions using seismic interferometry with drill-bit noise

机译:使用具有钻头噪声的地震干涉测量法检索钻头位置处的虚拟反射响应

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摘要

In the field of seismic interferometry, researchers have retrieved surface waves and body waves by cross-correlating recordings of uncorrelated noise sources to extract useful subsurface information. The retrieved wavefields in most applications are between receivers. When the positions of the noise sources are known, inter-source interferometry can be applied to retrieve the wavefields between sources, thus turning sources into virtual receivers. Previous applications of this form of interferometry assume impulsive point sources or transient sources with similar signatures. We investigate the requirements of applying inter-source seismic interferometry using non-transient noise sources with known positions to retrieve reflection responses at those positions and show the results using synthetic drilling noise as source. We show that, if pilot signals (estimates of the drill-bit signals) are not available, it is required that the drill-bit signals are the same and that the phases of the virtual reflections at drill-bit positions can be retrieved by deconvolution interferometry or by cross-coherence interferometry. Further, for this case, classic interferometry by cross-correlation can be used if the source power spectrum can be estimated. If pilot signals are available, virtual reflection responses can be obtained by first using standard seismic-while-drilling processing techniques such as pilot cross-correlation and pilot deconvolution to remove the drill-bit signatures in the data and then applying cross-correlation interferometry. Therefore, provided that pilot signals are reliable, drill-bit data can be redatumed from surface to borehole depths using this inter-source interferometry approach without any velocity information of the medium, and we show that a well-positioned image below the borehole can be obtained using interferometrically redatumed reflection responses with just a simple velocity model. We discuss some of the practical hurdles that restrict the application of the proposed method offshore.
机译:在地震干涉仪领域,研究人员通过互相关不相关噪声源的记录来检索表面波和体波,以提取有用的地下信息。在大多数应用中,检索到的波场在接收机之间。当噪声源的位置已知时,可以应用源间干涉测量法检索源之间的波场,从而将源转换为虚拟接收器。这种形式的干涉测量的先前应用假设具有相似特征的脉冲点源或瞬变源。我们研究了使用具有已知位置的非瞬态噪声源来应用源间地震干涉法以检索那些位置处的反射响应的要求,并显示了使用合成钻井噪声作为源的结果。我们表明,如果导频信号(钻头信号的估计值)不可用,则要求钻头信号是相同的,并且可以通过反卷积来获取钻头位置上虚拟反射的相位干涉测量法或交叉相干干涉测量法。此外,对于这种情况,如果可以估计源功率谱,则可以使用通过互相关的经典干涉测量法。如果有导频信号可用,则可以通过以下方法获得虚拟反射响应:首先使用标准的随钻地震处理技术,例如导频互相关和导频解卷积,以去除数据中的钻头签名,然后应用互相关干涉测量法。因此,只要导波信号可靠,就可以使用这种源间干涉法将钻头数据从地表深度重新确定为井壁深度,而无需任何介质速度信息,并且我们可以证明井眼下方位置良好的图像可以使用干涉速度重新计算的反射响应和一个简单的速度模型即可获得。我们讨论了一些限制拟议方法在海上应用的实际障碍。

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