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Development and testing of methods for analysing high resolution three-dimensional digital outcrop geology: Big Rock Quarry, Arkansas.

机译:高分辨率三维露头地质分析方法的开发和测试:阿肯色州大石矿场。

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摘要

This study makes use of the qualitative (facies distribution) and quantitative (bed/channel dimensions) information incorporated in three-dimensional virtual outcrops and together with other techniques such as ground-based remote sensing and analysis of terrain surfaces of outcrops, provides new tools for geologic mapping and interpretation. The deepwater deposits that crop out at Big Rock Quarry, Arkansas are used as a test site to illustrate the potential of this approach.; Three-dimensional photo real mapping techniques have been recently developed as effective tools for detailed outcrop studies, but their potential has not been fully exploited. Examination of the virtual outcrop allows the extraction of three-dimensional information, as well as geometries and orientations, which allow the accurate analysis of geology. The photo real model of the outcrop at Big Rock with assigned lithologies is used to reconstruct the bedding surfaces by interpolation between differently oriented exposures. The three-dimensional model of sedimentary bodies allowed capturing the three-dimensional spatial distribution of lithological units, which is fundamentally important for understanding the internal architecture of erosional and depositional features, in this case channelized features.; Multi-spectral analysis has been successfully used from space and airborne platforms, but in this study it is used to remotely sense lithology at outcrop scale, obliquely at close range with an increased spatial and spectral resolution. Analyses of the spectral characteristics of sandstone and shale samples from the outcrop at Big Rock over the visible and thermal infrared regions has identified spectral responses of these sedimentary rocks. Multi-spectral images of the outcrop were acquired using a thermal camera for the infrared part of the spectrum and a conventional camera for the visible range. Spectral images are co-registered and displayed in Red-Green-Blue color space to create false color images that are useful for highlighting lithologic variation.; By developing a surface classification algorithm for fracture identification and orientation it was possible to evaluate the fracture geometry, which is helpful in interpretation of reservoir quality. High-density, high-accuracy terrestrial laser scanners have been used to capture the surface morphology of the outcrop at Big Rock. Visualization and analysis of the centimeter-resolution terrain data provided a characterization of this fracture system.; Conventional outcrop information combined with new techniques, such as three-dimensional detailed geologic mapping, ground-based multi-spectral imaging, and 3-D analysis of terrain surfaces of the outcrop can add valuable information for a better description and interpretation of deepwater sedimentary successions in particular, but geology in general.
机译:这项研究利用了三维虚拟露头中包含的定性(相分布)和定量(床/河道尺寸)信息,并结合了其他技术(如地面遥感和露头地形表面分析),提供了新的工具用于地质测绘和解释。在阿肯色州大石矿场(Big Rock Quarry)种植的深水沉积物被用作测试地点,以说明这种方法的潜力。三维照片真实制图技术最近已被开发为进行详细露头研究的有效工具,但它们的潜力尚未得到充分开发。对虚拟露头的检查可以提取三维信息以及几何形状和方向,从而可以进行准确的地质分析。在Big Rock露头的照片真实模型具有指定的岩性,它通过在不同方向的曝光之间进行插值来重建层理面。沉积物的三维模型可以捕获岩性单元的三维空间分布,这对于理解侵蚀和沉积特征(在这种情况下为通道化特征)的内部结构至关重要。在空间和机载平台上已经成功地使用了多光谱分析,但是在这项研究中,它被用于以露头规模远程倾斜岩性,在近距离倾斜地增加了空间和光谱分辨率。对可见和热红外区域大岩石露头的砂岩和页岩样品光谱特征的分析已经确定了这些沉积岩的光谱响应。使用热像仪获取光谱的红外部分,使用常规相机获取可见范围的露头多光谱图像。光谱图像被共配准并显示在红-绿-蓝颜色空间中,以创建用于突出岩性变化的假彩色图像。通过开发用于裂缝识别和定向的表面分类算法,可以评估裂缝的几何形状,这有助于解释储层质量。高密度,高精度的地面激光扫描仪已用于捕获大石城露头的表面形态。厘米分辨率地形数据的可视化和分析提供了该裂缝系统的特征。常规露头信息与新技术相结合,例如三维详细地质制图,基于地面的多光谱成像以及露头地形表面的3D分析,可以添加有价值的信息,以更好地描述和解​​释深水沉积演替特别是地质学。

著录项

  • 作者

    Olariu, Mariana Iulia.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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