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A geometry-based adaptive unstructured grid generation algorithm for complex geological media

机译:复杂地质介质的基于几何的自适应非结构​​网格生成算法

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In this paper a novel unstructured grid generation algorithm is presented that considers the effect of geological features and well locations in grid resolution. The proposed grid generation algorithm presents a strategy for definition and construction of an initial grid based on the geological model, geometry adaptation of geological features, and grid resolution control. The algorithm is applied to seismotectonic map of the Masjed-i-Soleiman reservoir. Comparison of grid results with the "Triangle" program shows a more suitable permeability contrast. Immiscible two-phase flow solutions are presented for a fractured porous media test case using different grid resolutions. Adapted grid on the fracture geometry gave identical results with that of a fine grid. The adapted grid employed 88.2% less CPU time when compared to the solutions obtained by the fine grid.
机译:本文提出了一种新颖的非结构化网格生成算法,该算法考虑了地质特征和井位对网格分辨率的影响。提出的网格生成算法基于地质模型,地质特征的几何适应和网格分辨率控制提出了定义和构造初始网格的策略。该算法应用于Masjed-i-Soleiman水库的地震构造图。将网格结果与“ Triangle”程序进行比较显示出更合适的渗透率对比。针对使用不同网格分辨率的多孔介质破裂测试案例,提出了不混溶的两相流解决方案。在裂缝几何形状上调整网格可以得到与精细网格相同的结果。与通过精细网格获得的解决方案相比,经过改进的网格使​​用的CPU时间减少了88.2%。

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