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A petrophysical evaluation of the Trenton-Black River formation of the Michigan Basin.

机译:密歇根盆地特伦顿-黑河形成的岩石物理评价。

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摘要

This work is conducted to study the geological and petrophysical features of the Trenton-Black River limestone formation. Log curves, crossplots and mineral identification methods using well-log data are used to determine the components and analyze changes in lithology. Thirty-five wells from the Michigan Basin are used to define the mineralogy of Trenton-Black River limestone. Using the different responses of a few log curves, especially gamma-ray, resistivity and neutron porosity, the formation tops for the Utica shale, the Trenton limestone, the Black River limestone and the Prairie du Chien sandstone are identified to confirm earlier authors' work and provide a basis for my further work. From these, an isopach map showing the thickness of Trenton-Black River formation is created, indicating that its maximum thickness lies in the eastern basin and decreases gradually to the west. In order to obtain more detailed lithological information about the limestone formations at the thirty-five wells, (a) neutron-density and neutron-sonic crossplots, (b) mineral identification methods, including the M-N plot, MID plot, Qmaa vs. Umaa MID plot, and the PEF plot, and (c) a modified mineral identification technique are applied to these wells. From this, compositions of the Trenton-Black River formation can be divided into three different rock types: pure limestone, partially dolomitized limestone, and shaly limestone. Maps showing the fraction of dolomite and shale indicate their geographic distribution, with dolomite present more in the western and southwestern basin, and shale more common in the north-central basin. Mineral identification is an independent check on the distribution found from other authors, who found similar distributions based on core descriptions.;The Thomas Stieber method of analysis is best suited to sand-shale sequences, interpreting three different distributions of shale within sand, including dispersed, laminated and structural. Since this method is commonly applied in clastic rocks, my work using the Thomas Stieber method is new, as an attempt to apply this technique, developed for clastics, to carbonate rocks. Based on the original assumption and equations with a corresponding change to the Trenton-Black River formation, feasibility of using the Thomas Stieber method in carbonates is tested. A graphical display of gamma-ray versus density porosity, using the properties of clean carbonate and pure shale, suggests the presence of laminated shale in fourteen wells in this study. Combined with Wilson's study (2001), it is safe to conclude that when shale occurs in the Trenton-Black River formation, it tends to be laminated shale.
机译:这项工作是为了研究特伦顿-黑河石灰岩地层的地质和岩石物理特征。使用测井数据的测井曲线,交会图和矿物鉴定方法可用于确定组分并分析岩性变化。来自密歇根盆地的35口井用于确定特伦顿-黑河石灰岩的矿物学。利用一些测井曲线的不同响应,特别是伽马射线,电阻率和中子孔隙率,确定了尤蒂卡页岩,特伦顿石灰岩,黑河石灰岩和草原杜基恩砂岩的地层顶部,以确认早期作者的工作。为以后的工作打下基础由此,绘制了一张等压线图,显示了特伦顿-黑河地层的厚度,表明其最大厚度位于东部盆地,向西逐渐减小。为了获得有关35口井的石灰岩地层的更详细的岩性信息,(a)中子密度和中子-声交测图,(b)矿物识别方法,包括MN图,MID图,Qmaa与Umaa MID图和PEF图,以及(c)改良的矿物识别技术已应用于这些井。据此,特伦顿-黑河地层的组成可以分为三种不同的岩石类型:纯石灰岩,部分白云石化的石灰岩和页岩型石灰岩。显示白云岩和页岩比例的地图表明了它们的地理分布,在西部和西南盆地中白云岩含量更高,而在中北部盆地中页岩更常见。矿物识别是对其他作者发现的分布的独立检查,其他作者根据核心描述也发现了类似的分布。托马斯·斯蒂伯(Thomas Stieber)的分析方法最适合砂页岩层序,解释了砂土中三种不同的页岩分布,包括分散,层压和结构。由于这种方法通常用于碎屑岩中,因此我尝试使用托马斯·斯蒂伯(Thomas Stieber)方法进行的工作是新的,作为将这种针对碎屑岩开发的技术应用于碳酸盐岩的尝试。基于最初的假设和对特伦顿-布莱克河地层有相应变化的方程式,测试了在碳酸盐岩中使用托马斯·斯蒂伯方法的可行性。利用干净的碳酸盐和纯页岩的特性,γ射线对密度孔隙率的图形显示表明,在该研究中十四层井中存在层状页岩。结合Wilson的研究(2001年),可以得出结论,当Trenton-Black River地层中出现页岩时,它往往是层状页岩。

著录项

  • 作者

    Yang, Lu.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Geology.
  • 学位 M.S.
  • 年度 2015
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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