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A Geologically Consistent Permeability Model of Fractured Folded Carbonate Reservoirs: Lessons from Outcropping Analogue

机译:裂缝性折叠碳酸盐岩储层的地质一致性渗透率模型:露头类比的经验教训

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摘要

Presently adopted fracture-related permeability models of large folded reservoirs are simplistic and often unrelated to the geological setting and evolution of the considered structure. In order to improve predictions of fluid flow in more complex subsurface fractured reservoirs, we build a 3D fracture network model of an outcropping fold in Tunisia, and populate different structural domains with fracture data, collected from outcrops. Within the studied fold, we find large variations in deformation mechanisms between different formations, with the main mechanisms being Layer Parallel Shortening (LPS), resulting in regional deformation, and the more localized impact of fiber stresses and flexural slip. Within the steep flank of the anticline, we find that in one formation fracturing is mostly controlled by fiber stresses, whereas in the underlying formation flexural slip is the main deformation mechanism. These two formations are separated by a detachment surface. Using stress and strain fields, we aim at reconstructing the conditions at which these fractures have been formed. This can provide a better understanding of the relation between fracture patterns in different structural domains of a fold and the stress evolution that formed these fractures, and the subsequent impact of different fracture patterns on fluid flow in fractured folds.
机译:目前采用的与大型折叠储层有关的裂缝相关的渗透率模型过于简单,通常与所考虑结构的地质背景和演化无关。为了改善对更复杂的地下裂缝性储层流体流动的预测,我们建立了突尼斯露头褶皱的3D裂缝网络模型,并使用从露头收集的裂缝数据填充不同的结构域。在研究的褶皱内,我们发现不同地层之间的变形机制存在很大差异,主要机制是层平行缩短(LPS),导致区域变形,以及纤维应力和挠曲滑移的局部影响。在背斜的陡峭侧面,我们发现在一个地层中,裂缝主要由纤维应力控制,而在下层地层中,弯曲滑动是主要的变形机制。这两个结构被分离表面隔开。利用应力和应变场,我们旨在重建这些裂缝形成的条件。这可以更好地理解褶皱不同结构域中的裂缝模式与形成这些裂缝的应力演化之间的关系,以及不同裂缝模式对裂缝褶皱中流体流动的后续影响。

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