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Semiautomatic interpretation of 3D sedimentological structures on geologic images: An object-based approach

机译:地质图像上3D沉积物结构的半自动解释:基于对象的方法

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The characterization of sedimentary structures is an important step in constructing quantitative models of sedimentary deposits from digital images, such as 3D seismic data, satellite images, or digital outcrops. However, the interpretation of these structures generally consists of tedious line pickings followed by surface modeling to define geobodies. Automatic geobody extraction is an alternative, but it is sensitive to image noise, and it does not account for prior sedimentary knowledge. We decided to combine minimal picking by an interpreter with object-guided image processing and optimization to achieve fast and semiautomatic geobody interpretation. Our approach used a realistic volumetric geobody representation based on nonuniform rational basis splines, which can easily be deformed by the interpreter and numerical optimization. Custom edge detection guided by some initial rough interpretations was performed to strengthen the most relevant edges in the picture. Automatic optimization was then computed to fit the initial geobody to these highlighted edges. This approach was applied on satellite pictures showing alluvial channels, and some preliminary results on 3D seismic time slices were also presented. The interpreted channels were then used in a retrodeformation process to automatically reconstruct the point bars. This semiautomatic method opens new perspectives to help interpreters rapidly come up with 3D models of sedimentary structures from subsurface and analog surface data sets.
机译:沉积结构的表征是从数字图像(例如3D地震数据,卫星图像或数字露头)构建沉积物定量模型的重要步骤。但是,对这些结构的解释通常包括乏味的线拾取,然后进行曲面建模以定义地质体。自动地物提取是一种替代方法,但是它对图像噪声敏感,并且不能解释先前的沉积知识。我们决定将口译员的最少拣选与对象导向的图像处理和优化相结合,以实现快速和半自动的地质体解释。我们的方法使用了基于不均匀有理基础样条的逼真的体积地质体表示,可以通过解释器和数值优化轻松地使其变形。在一些初步的粗略解释的指导下进行了自定义边缘检测,以增强图片中最相关的边缘。然后计算自动优化,以使初始地质体适合这些突出显示的边缘。该方法已应用于显示冲积通道的卫星图片,并且还给出了有关3D地震时间片的一些初步结果。然后,将解释的通道用于反变形过程,以自动重建点线。这种半自动方法开辟了新的视角,可帮助解释人员从地下和模拟地表数据集中快速提出沉积结构的3D模型。

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