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Attenuation and velocity dispersion in the exploration seismic frequency band.

机译:勘探地震频带中的衰减和速度色散。

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摘要

In an anelastic medium, seismic waves are distorted by attenuation and velocity dispersion, which depend on petrophysical properties of reservoir rocks. The effective attenuation and velocity dispersion is a combination of intrinsic attenuation and apparent attenuation due to scattering, transmission response, and data acquisition system. Velocity dispersion is usually neglected in seismic data processing partly because of insufficient observations in the exploration seismic frequency band. This thesis investigates the methods of measuring velocity dispersion in the exploration seismic frequency band and interprets the velocity dispersion data in terms of petrophysical properties.;Using the SWCC method, velocity dispersion is measured in the uncorrelated vibrator VSP data from three areas with different geological settings, i.e., Mallik gas hydrate zone, McArthur River uranium mines, and Outokumpu crystalline rocks. The observed velocity dispersion is fitted to a straight line with respect to log frequency for a constant (frequency-independent) Q value. This provides an alternative method for calculating Q.;A constant Q value does not directly link to petrophysical properties. A modeling study is implemented for the Mallik and McArthur River data to interpret the velocity dispersion observations in terms of petrophysical properties. The detailed multi-parameter petrophysical reservoir models are built according to the well logs; the models' parameters are adjusted by fitting the synthetic data to the observed data. In this way, seismic attenuation and velocity dispersion provide new insight into petrophysics properties at the Mallik and McArthur River sites.;Potentially, observations of attenuation and velocity dispersion in the exploration seismic frequency band can improve the deconvolution process for vibrator data, Q-compensation, near-surface analysis, and first break picking for seismic data.;Broadband, uncorrelated vibrator data are suitable for measuring velocity dispersion in the exploration seismic frequency band, and a broad bandwidth optimizes the observability of velocity dispersion. Four methods of measuring velocity dispersion in uncorrelated vibrator VSP data are investigated, which are the sliding window crosscorrelation (SWCC) method, the instantaneous phase method, the spectral decomposition method, and the cross spectrum method. Among them, the SWCC method is a new method and has satisfactory robustness, accuracy, and efficiency.
机译:在非弹性介质中,地震波由于衰减和速度色散而失真,这取决于储层岩石的岩石物性。有效的衰减和速度色散是固有衰减和由于散射,传输响应和数据采集系统导致的视在衰减的组合。速度色散通常在地震数据处理中被忽略,部分原因是在勘探地震频带中观测不足。本文研究了在勘探地震频带内测量速度色散的方法,并根据岩石物理特性解释了速度色散数据。采用SWCC法,在三个不同地质环境的非相关振子VSP数据中测量了速度色散。即马里克天然气水合物带,麦克阿瑟河铀矿和奥托昆普结晶岩。对于恒定(与频率无关)的Q值,观察到的速度色散相对于对数频率拟合为一条直线。这提供了一种计算Q的替代方法。恒定的Q值并不直接与岩石物理特性相关。对Mallik和McArthur River数据进行了建模研究,以解释岩石物理特性方面的速度色散观测结果。根据测井结果建立了详细的多参数岩石物理储层模型。通过将合成数据拟合到观测数据来调整模型的参数。这样,地震衰减和速度弥散提供了对Mallik和McArthur River站点的岩石物理学性质的新见识。潜在地,在勘探地震频带中观察衰减和速度弥散可以改善振动器数据的反卷积过程,Q补偿。 ,近地表分析和地震数据的初次拾取。宽带,不相关的振动器数据适用于测量勘探地震频带中的速度色散,宽带宽优化了速度色散的可观察性。研究了四种不相关振子VSP数据中速度色散的测量方法,分别是滑动窗互相关(SWCC)法,瞬时相位法,频谱分解法和互谱法。其中,SWCC方法是一种新方法,具有令人满意的鲁棒性,准确性和效率。

著录项

  • 作者

    Sun, Langqiu.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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