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Iterative refinement of implicit boundary models for improved geological feature reproduction

机译:隐式边界模型的迭代细化,可改善地质特征的再现

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摘要

Geological domains contain non-stationary features that cannot be described by a single direction of continuity. Non-stationary estimation frameworks generate more realistic curvilinear interpretations of subsurface geometries. A radial basis function (RBF) based implicit modeling framework using domain decomposition is developed that permits introduction of locally varying orientations and magnitudes of anisotropy for boundary models to better account for the local variability of complex geological deposits. The interpolation framework is paired with a method to automatically infer the locally predominant orientations, which results in a rapid and robust iterative non-stationary boundary modeling technique that can refine locally anisotropic geological shapes automatically from the sample data. The method also permits quantification of the volumetric uncertainty associated with the boundary modeling. The methodology is demonstrated on a porphyry dataset and shows improved local geological features.
机译:地质领域包含非平稳特征,无法通过单一连续性方向来描述。非平稳估计框架对地下几何形状产生了更现实的曲线解释。开发了使用区域分解的基于径向基函数(RBF)的隐式建模框架,该框架允许引入边界模型的局部变化的方向和各向异性大小,以更好地说明复杂地质矿床的局部变化。插值框架与自动推断局部优势方向的方法结合使用,从而产生了一种快速,强大的迭代非平稳边界建模技术,该技术可以从样本数据中自动细化局部各向异性的地质形状。该方法还允许量化与边界建模有关的体积不确定性。该方法在斑岩数据集上得到证明,并显示出改进的局部地质特征。

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