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首页> 外文期刊>Journal of natural gas science and engineering >An experimental investigation on deformation and failure behavior of carbonaceous Garau shale in Lurestan Basin, west Iran: Application in shale gas development
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An experimental investigation on deformation and failure behavior of carbonaceous Garau shale in Lurestan Basin, west Iran: Application in shale gas development

机译:西伊朗龙兰盆地碳质GARAU页岩变形和失效行为的实验研究:在页岩气发展中的应用

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摘要

The safety and efficiency of commercial shale gas development strategies are tightly related to accurate evaluation of rock deformation and brittle failure processes. In contrast to extensively developed siliciclastic shale gas resources in the world, the mechanical behaviors of the carbonaceous shales and their causal mechanisms are not thoroughly understood. In this study, a geomechanical characterization program including unconfined and confined deviatoric compression experiments together with complementary compositional and microstructural analyses was therefore carried out to explain the stress-strain behaviors of the carbonaceous organic-rich Garau shales in Iran. Deformation and progressive fracturing process of the collected rock samples at varying confinement states were evaluated and discussed in terms of well-established mechanistic concepts and theoretical models. In addition, the applicability of some of widely used expressions for assessing rock brittleness was also investigated. According to the obtained results, in spite of substantially varying deformation and failure characteristics, all collected samples over the range of applied confinement states up to 40 MPa follow the typical brittle failure process. However, the degree of brittle failure in terms of brittleness is considerably variable and dependent to the established definition. Furthermore, the diagnosed range of stress-strain characteristics are dominantly correlated with variations of carbonate depositional textures. Accordingly, as the stiff fine-grained micritic fabric of a carbonaceous shale gradually transforms to relatively large sparitic texture, rock generally tends to fail at relatively lower strength but higher degree of brittleness. This relation can be advantageous to an accurate determination of the relative brittleness successions in carbonaceous shale gas layers for practical field operations.
机译:商业页岩气开发策略的安全性和效率与准确评估岩石变形和脆性破坏过程密切相关。与世界上广泛开发的硅质碎屑页岩气资源相比,碳质页岩的力学行为及其成因机制尚不完全清楚。因此,在这项研究中,开展了一项地质力学表征项目,包括无侧限和受限偏压缩实验,以及补充成分和微观结构分析,以解释伊朗富含碳有机质的加劳页岩的应力-应变行为。根据成熟的力学概念和理论模型,对采集的岩石样品在不同约束状态下的变形和渐进破裂过程进行了评估和讨论。此外,还研究了一些广泛使用的用于评估岩石脆性的表达式的适用性。根据获得的结果,尽管变形和破坏特征有很大变化,但在应用约束状态范围内(高达40 MPa)采集的所有样品都遵循典型的脆性破坏过程。然而,脆性方面的脆性破坏程度是相当可变的,并取决于既定的定义。此外,应力应变特征的诊断范围主要与碳酸盐沉积结构的变化相关。因此,随着碳质页岩坚硬的细粒微晶组构逐渐转变为相对较大的亮晶质结构,岩石通常倾向于在强度相对较低但脆性较高的情况下破坏。这种关系有助于准确确定实际现场作业中碳质页岩气层的相对脆性序列。

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