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首页> 外文期刊>International Journal for Numerical Methods in Engineering >An effective 3D meshing approach for fractured rocks
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An effective 3D meshing approach for fractured rocks

机译:有效的3D网格划分方法

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An effective mesh generation algorithm is proposed to construct mesh representations for arbitrary fractures in 3D rock masses. With the development of advanced imaging techniques, fractures in a rock mass can be clearly captured by a high-resolution 3D digital image but with a huge data set. To reduce the data size, corresponding mesh substitutes are required in both visualization and numerical analysis. Fractures in rocks are naturally complicated. They may meet at arbitrary angles at junctions, which could derive topological defects, geometric errors or local connectivity flaws on mesh models. A junction weight is proposed and applied to distinguish fracture junctions from surfaces by an adequate threshold. We take account of fracture junctions and generate an initial surface mesh by a simplified centroidal Voronoi diagram. To further repair the initial mesh, an innovative umbrella operation is designed and adopted to correct mesh topology structures and preserve junction geometry features. Constrained with the aforementioned surface mesh of fracture, a tetrahedral mesh is generated and substituted for the 3D image model to be involved in future numerical analysis. Finally, we take two fractured rock samples as application examples to demonstrate the usefulness and capability of the proposed meshing approach. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:提出了一种有效的网格生成算法来构造3D岩体中任意裂缝的网格表示。随着先进成像技术的发展,可以通过高分辨率3D数字图像清晰地捕获岩体中的裂缝,但具有巨大的数据集。为了减小数据大小,在可视化和数值分析中都需要相应的网格替代物。岩石中的裂缝自然很复杂。它们可能在结点处以任意角度相遇,这可能会导致网格模型上的拓扑缺陷,几何错误或局部连接性缺陷。提出了连接权重,并应用该权重来通过适当的阈值来区分表面的断裂连接。我们考虑了断裂连接,并通过简化的质心Voronoi图生成了初始表面网格。为了进一步修复初始网格,设计并采用了创新的伞操作来校正网格拓扑结构并保留结点几何特征。受到上述裂缝表面网格的约束,生成了四面体网格,并替换了要参与未来数值分析的3D图像模型。最后,我们以两个破裂的岩石样本为应用实例,以证明所提出的网格划分方法的有用性和能力。版权所有(c)2015 John Wiley&Sons,Ltd.

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