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Digital Outcrop Models: Applications of Terrestrial Scanning Lidar Technology in Stratigraphic Modeling

机译:数字露头模型:地面扫描激光雷达技术在地层建模中的应用

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摘要

Laser ranging is extremely accurate and efficient. Terrestrial scanning lidar (light detection and ranging) applied to outcrop stratigraphic mapping enables researchers to capture laser range data at a rate of thousands of individual X, Y, Z and laser-intensity points per second. These data, in conjunction with complementary remotely and directly sampled data, are used to conduct high-precision facies characterization and to construct 3D geological computer models. Outcrop data are presented here to explain our workflow and to discuss the construction of rock-based 3D Digital Outcrop Models (DOMs). Reproducibility and quantification are the drivers of this methodology. High-resolution terrestrial lidar acquisition, processing, interpretation, and visualization are discussed and applied to mapping of geological surfaces in three dimensions. Laser-generated models offer scientists an unprecedented visualization medium in a quantitative 3D arena. Applications of this technology include constructing and visualizing complex 3D Earth models from outcrops for improved reservoir modeling, flow simulation in hydrocarbon and aquifer systems, and property modeling to constrain forward seismic modeling.
机译:激光测距非常准确和高效。应用于露头 地层制图的陆地 扫描激光雷达(光检测和测距)使研究人员能够以成千上万个X的速率捕获激光测距 数据,Y,Z和每秒激光强度 点。这些数据与互补的 远程直接采样的数据一起用于进行高精度的 相表征和构建3D地质计算机 模型。这里提供露头数据以解释我们的工作流程 并讨论基于岩石的3D数字露头模型(DOM)的构建。重现性和定量是此方法的驱动程序 。讨论了高分辨率陆地激光雷达的采集, 处理,解释和可视化 ,并将其应用于三维地质图的绘制。 激光生成模型在定量3D领域为科学家提供了前所未有的可视化 媒体。 这项技术的应用包括从露头构建和可视化复杂的3D地球模型 以改善储层建模,在烃和含水层系统中进行流动模拟 以及特性建模以 约束正向地震建模。

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  • 来源
    《Journal of Sedimentary Research》 |2005年第2期|00000166-00000176|共11页
  • 作者单位

    Bureau of Economic Geology, John A. and Katherine G. Jackson School of Geosciences, The University of Texas at Austin, Austin, Texas, U.S.A.;

    Bureau of Economic Geology, John A. and Katherine G. Jackson School of Geosciences, The University of Texas at Austin, Austin, Texas, U.S.A.;

    Bureau of Economic Geology, John A. and Katherine G. Jackson School of Geosciences, The University of Texas at Austin, Austin, Texas, U.S.A.;

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