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Seismic exploration methods for hydrothermal dolomite reservoirs: A case study of the Trenton-Black River groups.

机译:热液白云岩储层的地震勘探方法-以特伦顿-黑河群为例。

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摘要

This thesis discusses 3D seismic exploration for hydrothermal dolomite (HTD) reservoirs. During this project, I utilized some of the existing algorithms as well as developed my own methods. I mentioned that HTD reservoirs constitute an important hydrocarbon play-type the world over, and are particularly important within the Ordovician aged Trenton-Black River Group in eastern North America. I noted that 3D seismic is the best tool to explore for HTD but it is adversely affected by random noise and acquisition footprint which must be attenuated. I designed a post-stack processing flow that can be applied to attenuate noise, highlight fault terminations, and increase reflection events continuity.;By predicting porosity using seismic attributes, I examined the relationships between porosity distribution and faulting, and between porosity and seismic attributes. Results show that porosity development depends on basement-related faults, and that hydrocarbon production rate depends on the presence of faults, fractures and porosity. The results show that the sag observed to be associated with HTD reservoirs on seismic sections is due to velocity pull-down and that the best porosity is developed in these areas. The methods and results presented in this project can be used in other places with similar geologic settings.;By way of semblance, I developed a dual-parameter scanning algorithm that can recover both NMO velocity (vnmo) and the effective anisotropic parameter (etaeff) at the same time, from which interval eta (etaint) is obtained by inversion. Noise-free synthetic data application show 10% maximum deviation between the extracted and actual flint values, while noise-contaminated synthetic data show >20% deviation. Real data application shows that it is possible to discriminate between HTD and limestone. Further testing is required to establish its validity. A velocity ratio (Vp/Vs) extracting algorithm was developed using AVO prestack amplitude inversion. Noise-free synthetic data application shows 11% maximum error between the scanned and the actual Vp/Vs values, while the noisy data deviation is 22%. Real data application indicates a distinction between HTD and limestone. Testing with other real data sets is required to validate the usefulness of the method.
机译:本文讨论了热液白云岩(HTD)储层的3D地震勘探。在该项目期间,我利用了一些现有算法并开发了自己的方法。我提到过,HTD储层是世界范围内重要的烃类游动类型,在北美东部奥陶纪的特伦顿-黑河集团中尤为重要。我注意到3D地震是探索HTD的最佳工具,但是它受到随机噪声和必须衰减的采集足迹的不利影响。我设计了一种叠后处理流程,该流程可用于降低噪声,突出显示断层终止并增加反射事件的连续性。通过使用地震属性预测孔隙度,我检查了孔隙度分布与断层之间以及孔隙度与地震属性之间的关系。 。结果表明,孔隙度的发展取决于与基底相关的断层,而油气产量取决于断层,裂缝和孔隙度的存在。结果表明,观察到的与地震剖面上的HTD储层有关的下陷是由于速度下降而引起的,并且在这些地区形成了最佳的孔隙度。该项目中介绍的方法和结果可以在具有相似地质背景的其他地方使用。通过相似的方式,我开发了一种双参数扫描算法,该算法可以恢复NMO速度(vnmo)和有效各向异性参数(etaeff)同时,通过反转从中获得间隔eta(etaint)。无噪声的合成数据应用显示提取的和实际的火石值之间的最大偏差为10%,而受噪声污染的合成数据显示的偏差> 20%。实际数据应用表明,可以区分HTD和石灰石。需要进一步测试以确定其有效性。利用AVO叠前振幅反演开发了速度比(Vp / Vs)提取算法。无噪声的合成数据应用程序显示,扫描的和实际的Vp / Vs值之间的最大误差小于11%,而噪声数据的偏差为22%。实际数据表明,HTD和石灰石之间存在区别。需要使用其他真实数据集进行测试以验证该方法的有效性。

著录项

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 365 p.
  • 总页数 365
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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