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Reduced Fracture Finite Element Model Analysis of an Efficient Two-Scale Hybrid Embedded Fracture Model

机译:高效两尺度混合嵌入式断裂模型的简化断裂有限元模型分析

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摘要

A Hybrid Embedded Fracture (HEF) model was developed to reduce various computational costs while maintaining physical accuracy (Amir and Sun, 2016). HEF splits the computations into fine scale and coarse scale. Fine scale solves analytically for the matrix-fracture flux exchange parameter. Coarse scale solves for the properties of the entire system. In literature, fractures were assumed to be either vertical or horizontal for simplification (Warren and Root, 1963). Matrix-fracture flux exchange parameter was given few equations built on that assumption (Kazemi, 1968; Lemonnier and Bourbiaux, 2010). However, such simplified cases do not apply directly for actual random fracture shapes, directions, orientations …etc. This paper shows that the HEF fine scale analytic solution (Amir and Sun, 2016) generates the flux exchange parameter found in literature for vertical and horizontal fracture cases. For other fracture cases, the flux exchange parameter changes according to the angle, slop, direction, … etc. This conclusion rises from the analysis of both: the Discrete Fracture Network (DFN) and the HEF schemes. The behavior of both schemes is analyzed with exactly similar fracture conditions and the results are shown and discussed. Then, a generalization is illustrated for any slightly compressible single-phase fluid within fractured porous media and its results are discussed.
机译:开发了一种混合嵌入式骨折(HEF)模型,以减少各种计算成本,同时保持物理准确性(Amir and Sun,2016)。 HEF将计算分为精细等级和粗略等级。细尺度解析地求解基体-断裂通量交换参数。粗刻度可解决整个系统的特性。在文献中,为简化起见,假定裂缝是垂直的还是水平的(Warren和Root,1963年)。在这个假设的基础上,很少给出基体-断裂通量交换参数的方程式(Kazemi,1968; Lemonnier and Bourbiaux,2010)。但是,这种简化的情况不适用于实际的随机裂缝形状,方向,方向等。本文表明,HEF精细尺度解析解决方案(Amir and Sun,2016)生成了文献中针对垂直和水平裂缝案例的通量交换参数。对于其他裂缝情况,通量交换参数根据角度,坡度,方向等而变化。这一结论来自对离散裂缝网络(DFN)和HEF方案的分析。在完全相似的断裂条件下分析了这两种方案的行为,并显示和讨论了结果。然后,对裂缝性多孔介质中任何微压缩的单相流体进行了概括,并讨论了其结果。

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