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一种生成小规模、高分辨率的沉积床形结构模型的方法,该模型代表了真实的地质相。

A method to generate small-scale, high-resolution sedimentary bedform architecture models representing realistic geologic facies.

机构信息

Bureau of Economic Geology, Jackson School of Geosciences, The University of Texas at Austin, Austin, TX, USA.

Department of Petroleum and Geosystems Engineering, The University of Texas at Austin, Austin, TX, USA.

出版信息

Sci Rep. 2017 Aug 23;7(1):9238. doi: 10.1038/s41598-017-09065-9.

Abstract

Small-scale (mm to m) sedimentary structures (e.g. ripple lamination, cross-bedding) have received a great deal of attention in sedimentary geology. The influence of depositional heterogeneity on subsurface fluid flow is now widely recognized, but incorporating these features in physically-rational bedform models at various scales remains problematic. The current investigation expands the capability of an existing set of open-source codes, allowing generation of high-resolution 3D bedform architecture models. The implemented modifications enable the generation of 3D digital models consisting of laminae and matrix (binary field) with characteristic depositional architecture. The binary model is then populated with petrophysical properties using a textural approach for additional analysis such as statistical characterization, property upscaling, and single and multiphase fluid flow simulation. One example binary model with corresponding threshold capillary pressure field and the scripts used to generate them are provided, but the approach can be used to generate dozens of previously documented common facies models and a variety of property assignments. An application using the example model is presented simulating buoyant fluid (CO) migration and resulting saturation distribution.

摘要

小规模(毫米至米)的沉积构造(例如,波纹层理、交错层理)在沉积地质学中受到了广泛关注。沉积非均质性对地下流体流动的影响现在已得到广泛认可,但在各种尺度上,将这些特征纳入物理合理的床形模型仍然存在问题。本研究扩展了一组现有开源代码的功能,允许生成高分辨率的三维床形结构模型。所实现的修改使得能够生成由纹层和基质(二进制场)组成的 3D 数字模型,具有特征沉积结构。然后,使用纹理方法将岩石物理特性填充到二进制模型中,以便进行额外的分析,例如统计特征描述、属性上推以及单相和多相流体流动模拟。提供了一个带有相应阈值毛管压力场的二进制模型示例以及生成它们的脚本,但该方法可用于生成数十种先前记录的常见相模型和各种属性分配。本文提出了一个应用示例,模拟了浮质流体(CO)的运移及其导致的饱和度分布。

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