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Towards Automatic and Topologically Consistent 3D Regional Geological Modeling from Boundaries and Attitudes

机译:从边界和姿态走向自动且拓扑一致的3D区域地质建模

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Three-dimensional (3D) geological models are important representations of the results of regional geological surveys. However, the process of constructing 3D geological models from two-dimensional (2D) geological elements remains difficult and is not necessarily robust. This paper proposes a method of migrating from 2D elements to 3D models. First, the geological interfaces were constructed using the Hermite Radial Basis Function (HRBF) to interpolate the boundaries and attitude data. Then, the subsurface geological bodies were extracted from the spatial map area using the Boolean method between the HRBF surface and the fundamental body. Finally, the top surfaces of the geological bodies were constructed by coupling the geological boundaries to digital elevation models. Based on this workflow, a prototype system was developed, and typical geological structures (e.g., folds, faults, and strata) were simulated. Geological modes were constructed through this workflow based on realistic regional geological survey data. The model construction process was rapid, and the resulting models accorded with the constraints of the original data. This method could also be used in other fields of study, including mining geology and urban geotechnical investigations.
机译:三维(3D)地质模型是区域地质调查结果的重要表示。但是,从二维(2D)地质要素构建3D地质模型的过程仍然很困难,而且不一定很可靠。本文提出了一种从2D元素迁移到3D模型的方法。首先,使用Hermite径向基函数(HRBF)构造地质界面,以内插边界和姿态数据。然后,使用HRBF曲面和基体之间的布尔方法从空间地图区域中提取地下地质体。最后,通过将地质边界与数字高程模型耦合来构造地质体的顶面。基于此工作流程,开发了原型系统,并模拟了典型的地质构造(例如褶皱,断层和地层)。通过该工作流,基于现实的区域地质调查数据构建了地质模式。模型构建过程迅速,生成的模型符合原始数据的约束。这种方法还可以用于其他研究领域,包括采矿地质学和城市岩土勘察。

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