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首页> 外文期刊>Geoscientific Model Development >Automated geological map deconstruction for 3D model construction using map2loop 1.0 and map2model 1.0
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Automated geological map deconstruction for 3D model construction using map2loop 1.0 and map2model 1.0

机译:使用MAP2Loop 1.0和MAP2MODEL 1.0自动化地质地图解构3D模型施工1.0

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At a regional scale, the best predictor for the 3D geology of the near-subsurface is often the information contained in a geological map. One challenge we face is the difficulty in reproducibly preparing input data for 3D geological models. We present two libraries ( map2loop and map2model ) that automatically combine the information available in digital geological maps with conceptual information, including assumptions regarding the subsurface extent of faults and plutons to provide sufficient constraints to build a prototype 3D geological model. The information stored in a map falls into three categories of geometric data: positional data, such as the position of faults, intrusive, and stratigraphic contacts; gradient data, such as the dips of contacts or faults; and topological data, such as the age relationships of faults and stratigraphic units or their spatial adjacency relationships. This automation provides significant advantages: it reduces the time to first prototype models; it clearly separates the data, concepts, and interpretations; and provides a homogenous pathway to sensitivity analysis, uncertainty quantification, and value of information studies that require stochastic simulations, and thus the automation of the 3D modelling workflow from data extraction through to model construction. We use the example of the folded and faulted Hamersley Basin in Western Australia to demonstrate a complete workflow from data extraction to 3D modelling using two different open-source 3D modelling engines: GemPy and LoopStructural .
机译:在区域规模,近地下表面的3D地质的最佳预测因子通常是地质图中包含的信息。我们面临的一个挑战是难以再现地准备3D地质模型的输入数据。我们展示了两个库(Map2loop和Map2model),它自动将数字地质图中可用的信息与概念信息相结合,包括关于故障和钚的地下范围的假设,以提供足够的限制来构建原型3D地质模型。存储在地图中的信息分为三类几何数据:位置数据,例如故障的位置,侵入性和地层触点;梯度数据,例如触点或故障的倾斜;和拓扑数据,例如故障和地层单位的年龄关系或其空间邻接关系。这种自动化提供了显着的优点:它将时间减少到第一个原型模型;它清楚地将数据,概念和解释分开;并提供对需要随机模拟的敏感性分析,不确定量化和信息研究价值的均匀途径,从而从数据提取到模型构造的3D建模工作流程的自动化。我们使用西澳大利亚折叠和断层仓库盆地的示例来展示使用两个不同开源3D建模引擎的数据提取到3D建模的完整工作流程:Gempy和Loop结构。

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