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A Novel Approach to the Geomechanical Characterization of Basement Fractures-Are Open Fractures Necessarily Critically Stressed

机译:一种新的地质力学表征地下室骨折的方法 - 是开放的骨折必须严重压力

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This paper attempts to answer a fundamental question pertinent to fracture characterization of unconventional basement reserves using rock mechanics & petrophysics; are open fractures in basements necessary critically stressed? Evaluation of naturally occurring fractures are critical for production as well as reserves estimation. In this regard, a study well was drilled in the basement section of the Cauvery basin to explore unconventional pay zones & characterize the contributing fractures by integrated Geomechanical & Petrophysical analysis. A suite of open hole logs including the basic, acoustic and electrical borehole images were acquired and an integrated approach was taken, including geomechanical analysis to identify the contributing fractures. Standard petrophysical evaluation in basements was inconclusive and porosity quantification from fractures posed a major challenge. Image log analysis involved identification of conductive and resistive fractures in the gauged wellbore and combining Stoneley reflectivity further indicated probable open fractures. Following this, a geomechanical analysis was carried out to determine the current in-situ stress orientation/ magnitudes based on observed breakouts. Finally a CSF study was done to check for fracture slip events. Based on the integrated study of Petrophysics and Geomechanics, an optimized workflow was developed and the critically stressed fractures were identified. It was found that, while some fractures strike direction was different from the present day maximum horizontal stress direction (S_(Hmax)), in general, most fractures were indeed aligned to S_(Hmax). To check the fluid flowing capability of fracture networks, formation tester was deployed in selective zones for testing and sampling. Successful hydrocarbon sampling from selective fractures with orientation not aligned to S_(Hmax) led to the validation of the current study. The results proved that while most critically stressed/open fractures did indeed contribute to flow, a smaller fraction of the naturally occurring fractures while contributing to flow, were not necessarily aligned to the in situ orientations. The results present a discrepancy between observation and the expectation that open fractures are necessarily oriented parallel or nearly parallel to modern-day S_(Hmax). This works highlights the fact that although paleo-stresses may influence the fracture networks, it is the contemporary in-situ stresses that truly dominate fluid flow and only through a detailed understanding of the critically stressed areas, can we come to a decisive conclusion that further improves overall recovery.
机译:本文试图回答利用岩石力学和岩石物理学对非传统地下室储备的裂缝表征相关的基本问题;在必要的基础中是开放的骨折,必要的批判性强调吗?对天然发生的骨折的评估对于生产以及储备估计至关重要。在这方面,在Cauvery盆地的地下室部分钻井井,以探索非传统的工资区,并通过综合地质力学和岩石物理分析表征伴随骨折。获取包括基本,声学和电钻图像的开放孔日志套件,并采取了综合方法,包括地质力学分析,以识别贡献骨折。地下室的标准岩石物理评估是从骨折的不确定和孔隙率定量构成了重大挑战。图像日志分析涉及测量井筒中导电和电阻骨折的识别,并将Stoneley反射率相结合进一步表明可能的开放性裂缝。在此之后,进行了地质力学分析以确定基于观察到的突破的原位应力取向/大小。最后,完成了CSF研究以检查骨折滑移事件。基于岩石物理学和地理学的综合研究,开发了优化的工作流程,鉴定了危险的压力骨折。结果发现,虽然一些骨折击球方向不同于当今的最大水平应力方向(S_(Hmax)),但通常,大多数裂缝确实对准到S_(HMAX)。为了检查骨折网络的流体流动能力,在选择性区域部署地层测试仪进行测试和取样。从选择性骨折的成功碳氢化合物取样与未对齐的取向没有对齐(HMAX)导致当前研究的验证。结果证明,虽然最严重的压力/开放性裂缝确实有助于流动,但在有助于流动的同时较小的自然发生的裂缝部分不一定与原位取向对齐。结果在观察之间存在差异,并且打开骨折必须与现代S_(HMAX)平行或几乎平行的预期。这项工作突出了这一事实,尽管古老应力可能影响骨折网络,所以当代的原位应力真正主导流体流动,并且只有通过详细了解批判强调的地区,我们可以进一步实现决定性的结论提高整体恢复。

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