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Unlocking the correlation in fluvial outcrops by using a DOM-derived virtual datum: Method description and field tests in the Huesca fluvial fan, Ebro Basin (Spain)

机译:通过使用DOM派生的虚拟数据来揭示河流露头的相关性:西班牙埃布罗盆地韦斯卡河河流扇中的方法描述和现场测试

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摘要

Adequate characterization of depositional architecture is of great importance when studying fluvial outcrops as reservoir analogs. The complex three-dimensional (3D) distribution and lateral and vertical relationships of sandstone bodies require a high degree of stratigraphic control in order to make a proper assessment of the distribution and connectivity of the reservoir facies. This assessment demands the use of reliable correlation datums. Unfortunately, clear marker beds (e.g., ash layers, coal beds, and paleosols) are not always available in fluvial outcrops, and when present, they are often covered by vegetation or debris that prevents their tracking over long distances. A new method to achieve highly accurate and semiautomatic correlations within fluvial digital outcrop models (DOMs) is presented in response to the need for further correlation procedures, especially in the absence of suitable datums. The method is based on the hypothesis that the average depositional paleosurface of a sedimentary system can be represented by a plane at outcrop scale. If this assumption is valid, this plane can be used as a virtual datum to identify along the DOM the sediments that were deposited simultaneously. The method was tested and applied successfully within two kilometer-scale outcrops of the Huesca fluvial fan (Early Miocene, northern Spain), where the virtual datum provided accurate correlations regardless of stratigraphic or topographical complexities. Moreover, all the sedimentary successions of the outcrops could be automatically subdivided into the desired stratigraphic intervals by only moving the virtual datum vertically. These intervals can be subsequently isolated to facilitate the detection of subtle variations and trends of their fluvial properties. Consequently, a virtual datum is the equivalent of having a marker bed crossing the stratigraphic succession of an outcrop at any desired position. The advantages provided by a virtual datum prove to be especially useful in large and topographically complex outcrops that previously could not have been studied with such a high degree of 3D stratigraphic control.
机译:在研究河流露头作为储层类似物时,沉积构造的充分表征非常重要。砂岩体的复杂三维(3D)分布以及横向和纵向关系需要高度地层控制,以便对储层相的分布和连通性做出适当的评估。该评估要求使用可靠的相关数据。不幸的是,河流露头并不总是有清晰的标记层(例如,灰层,煤层和古土壤),并且当存在时,它们经常被植被或碎屑所覆盖,无法长距离追踪。提出了一种在河流数字露头模型(DOM)中实现高度准确和半自动关联的新方法,以响应对进一步关联程序的需求,特别是在没有合适基准的情况下。该方法基于这样的假设:沉积系统的平均沉积古表面可以用露头尺度的平面表示。如果该假设有效,则可以将该平面用作虚拟基准面,以沿着DOM识别同时沉积的沉积物。该方法已在韦斯卡河河谷扇形体(西班牙北部早期中新世)的两公里规模露头中成功测试并应用,无论地层或地形复杂性如何,虚拟基准面都能提供准确的相关性。此外,只需垂直移动虚拟基准面,露头的所有沉积层序都可以自动细分为所需的地层间隔。随后可以隔离这些间隔,以帮助检测其河流属性的细微变化和趋势。因此,虚拟基准相当于在任何所需位置都具有穿过露头地层序列的标记床。事实证明,虚拟基准所提供的优势在大型且地形复杂的露头中特别有用,而以前这种高露头的3D地层控制无法研究露头。

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