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Mechanical insights into the development of fracture corridors in layered rocks

机译:在层状岩石中骨折走廊发展的机械洞察

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Fracture corridors are ubiquitous features formed by closely-spaced sub-parallel fractures, typically occurring in brittle mechanical units. They are important because they can form drains for fluids in hydrocarbon reservoirs and aquifers. Their development is sometimes associated with local structural or sedimentary heterogeneities but other situations exist where their mechanical origin remains obscure. In this paper, we investigate the combined role of contrasts in mechanical properties of consecutive layers and pre-existing fracturing in the formation of fracture corridors in sedimentary rocks, using 2D elastic finite element models.Our models contain five bonded layers with contrasted elastic properties and two pre-existing open fractures in the central layer. Firstly, we compute stress fields in the models submitted to biaxial compression and compression-extension plane strain loading. We identify favorable stress conditions supporting further fracturing in both situations. Secondly, we investigate fracture clustering mechanisms by means of quasi-static fracture propagations in identified areas of tensile stress. We characterize three situations leading to the development of incipient fracture corridors and discuss their geological implications. Finally, we propose a new conceptual model for the formation of these features in the subsurface, with important consequences for the characterization and modeling of fractured reservoirs.
机译:断裂走廊是通过紧密间隔的副平行裂缝形成的普遍存在的特征,通常以脆性机械单元发生。它们很重要,因为它们可以在碳氢化合物储层和含水层中形成液体的排水管。他们的发展有时与局部结构或沉积异质性有关,但存在其机械源仍然模糊的其他情况存在。在本文中,我们研究了使用2D弹性有限元模型的连续层的机械性能与沉积岩中骨折走廊的形成的综合作用。我们的模型含有具有对比的弹性特性的五个粘合层。中央层中的两个预先存在的开口骨折。首先,我们计算提交给双轴压缩和压缩延伸平面应变负荷的模型中的应力字段。我们确定支持两种情况的进一步压裂的良好应力条件。其次,我们通过在鉴定的拉应力区域中通过准静态断裂繁殖来研究骨折聚类机制。我们的特征是三种情况,导致初始骨折走廊的发展,并讨论其地质意义。最后,我们提出了一种新的概念模型,用于在地下形成这些特征,具有对裂缝储层的表征和建模的重要影响。

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