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Topological impact of constrained fracture growth

机译:约束裂缝增长的拓扑影响

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The topology of two discrete fracture network models is compared to investigate the impact of constrained fracture growth. In the Poissonian discrete fracture network model the fractures are assigned length, position and orientation independent of all other fractures, while in the mechanical discrete fracture network model the fractures grow and the growth can be limited by the presence of other fractures. The topology is found to be impacted by both the choice of model, as well as the choice of rules for the mechanical model. A significant difference is the degree mixing. In two dimensions the Poissonian model results in assortative networks, while the mechanical model results in disassortative networks. In three dimensions both models produce disassortative networks, but the disassortative mixing is strongest for the mechanical model.
机译:比较了两个离散裂缝网络模型的拓扑,以研究约束裂缝增长的影响。在泊松离散裂缝网络模型中,为裂缝指定了长度,位置和方向,而与所有其他裂缝无关,而在机械离散裂缝网络模型中,裂缝扩展了,并且由于存在其他裂缝而限制了扩展。发现拓扑受模型选择以及机械模型规则选择的影响。显着差异是混合程度。在二维中,泊松模型产生分类网络,而力学模型产生分散网络。在三个维度上,两个模型均产生分解网络,但对于机械模型,分解混合最强。

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