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Structural and facies characterization of the Niobrara Formation in Goshen and Laramie counties, Wyoming.

机译:怀俄明州Goshen和Laramie县Niobrara组的结构和相特征。

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摘要

The Niobrara Formation is a fine-grained marine rock deposited in the Western Interior Seaway during the Late Cretaceous. It is composed of fossil-rich interlayered shale, marls, and chalks. Recent interest in the Niobrara has grown due to the advent of lateral drilling and multi-stage hydraulic fracturing. This technology allows operators to economically extract hydrocarbons from chalkier Niobrara facies. Yet two aspects of the Niobrara Formation have remained enigmatic. The first is the occurrence of abundant, randomly oriented, layer-bound, normal faults. The second is the large degree of vertical heterogeneity. This research aimed to increase understanding in both these aspects of the Niobrara Formation.;Randomly oriented normal faults have been observed in Niobrara outcrops for nearly a hundred years. Recent high resolution 3D seismic in the Denver Basin has allowed investigators to interpret these faults as part of a polygonal fault system (PFS). PFS are layer bound extensional structures that typically occur in fine-grained marine sediments. Though their genesis and development is still poorly understood, their almost exclusive occurrence in fine-grained rocks indicates their origin is linked to lithology. Interpretation of a 3D seismic cube in Southeast Wyoming found a tier of polygonal faulting within the Greenhorn-Carlile formations and another tier of polygonal faulting within the Niobrara and Pierre formations. This research also found that underlying structural highs influence fault growth and geometries within both these tiers.;Core data and thin sections best describe vertical heterogeneity in fine-grained rocks. This investigation interpreted core data and thin sections in a well in Southeast Wyoming and identified 10 different facies. Most of these facies fall within a carbonate/clay spectrum with clay-rich facies deposited during periods of lower sea level and carbonate-rich facies deposited during periods of higher sea level.;Because the average operator will typically have little core but abundant well logs, this investigation used three different methods of describing facies variability with logs. Facies interpreted with these methods are referred to as electrofacies. First, a conventional interpretation of Niobrara sub-units was done using gamma ray and resistivity logs. Then a cluster analysis was conducted on an extensive petrophysical log suite. Finally, a neural network was trained with the previous core interpretation so that it learned to identify facies from logs. The research found that when little core is available a cluster analysis method can capture significant amounts of vertical heterogeneity within the Niobrara Formation. But if core is available then a neural network method provides more meaningful and higher resolution interpretations.
机译:Niobrara组是白垩纪晚期沉积在西部内海道中的细粒海相岩石。它由富含化石的夹层页岩,泥灰岩和白垩组成。由于侧向钻井和多阶段水力压裂的出现,对Niobrara的近期兴趣日益增长。这项技术使操作员能够经济地从白垩质Niobrara相中提取碳氢化合物。但是尼奥布拉拉组的两个方面仍然是个谜。首先是大量的,随机定向的,层约束的正常断层的发生。第二是高度的垂直异质性。这项研究旨在增进对尼布拉拉组的这两个方面的了解。在尼布拉拉地区的露头已经观察到了随机取向的正断层近一百年。丹佛盆地最近的高分辨率3D地震已使研究人员能够将这些断层解释为多边形断层系统(PFS)的一部分。 PFS是通常在细粒海洋沉积物中发生的层约束延伸结构。尽管对其成因和发育仍知之甚少,但它们在细粒岩石中几乎排他的现象表明其起源与岩性有关。在怀俄明州东南部的一个3D地震立方体的解释中,在Greenhorn-Carlile地层中发现了一层多边形断层,在Niobrara和Pierre地层中发现了另一层多边形断层。这项研究还发现,潜在的构造高位在这两个层中都影响断层的生长和几何形状。岩心数据和薄片最能描述细粒岩石的垂直非均质性。这项调查解释了怀俄明州东南部一口井中的核心数据和薄片,并确定了10个不同的相。这些相中大多数都属于碳酸盐/黏土谱,其中在海平面较低时沉积了富含粘土的相,而在海平面较高时沉积了富含碳酸盐的相。 ,这项研究使用三种不同的方法来描述随钻的相变。用这些方法解释的相称为电相。首先,使用伽马射线和电阻率测井对尼布拉拉亚单元进行了常规解释。然后,在一个广泛的岩石物理测井套件上进行了聚类分析。最终,使用先前的核心解释对神经网络进行了训练,使其学会了从测井中识别相。研究发现,当几乎没有岩心可用时,聚类分析方法可以捕获Niobrara组内大量的垂直非均质性。但是,如果核心可用,则神经网络方法将提供更有意义和更高分辨率的解释。

著录项

  • 作者

    Kernan, Nicholas Devereux.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Geology.;Sedimentary Geology.;Petrology.;Geophysics.
  • 学位 M.S.
  • 年度 2015
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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