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An integrated methodology for sub-surface fracture characterization using microseismic data: A case study at the NW Geysers

机译:使用微地震数据表征地下裂缝的综合方法:以西北间歇泉为例

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摘要

Geothermal and unconventional hydrocarbon reservoirs are often characterized by low permeability and porosity. So, they are difficult to produce and require stimulation techniques, such as thermal shear deactivation and hydraulic fracturing. Fractures provide porosity for fluid storage and permeability for fluid movement and play an important role in production from this kind of reservoirs. Hence, characterization of fractures has become a vitally important consideration in every aspect of exploration, development and production so as to provide additional energy resources for the world. During the injection or production of fluid, induced seismicity (micro-seismic events) can be caused by reactivated shears created fractures or the natural fractures in shear zones and faults. Monitoring these events can help visualize fracture growth during injection stimulation. Although the locations of microseismic events can be a useful characterization tool and have been used by many authors, we go beyond these locations to characterize fractures more reliably. Tomographic inversion, fuzzy clustering, and shear wave splitting are three methods that can be applied to microseismic data to obtain reliable characteristics about fractured areas. In this article, we show how each method can help us in the characterization process. In addition, we demonstrate how they can be integrated with each other or with other data for a more holistic approach. The knowledge gained might be used to optimize drilling targets or stimulation jobs to reduce costs and maximize production.
机译:地热和非常规油气藏通常具有低渗透率和低孔隙度的特征。因此,它们难以生产并且需要增产技术,例如热剪切失活和水力压裂。裂缝为流体的储藏提供了孔隙,为流体的流动提供了渗透性,并且在这种储层的生产中起着重要作用。因此,在勘探,开发和生产的各个方面,裂缝的表征已成为至关重要的考虑因素,以便为世界提供更多的能源。在注入或生产流体的过程中,诱发的地震活动(微地震事件)可能是由于重新激活的剪切作用而产生的裂缝或剪切带和断层中的自然裂缝所致。监视这些事件可以帮助可视化注射刺激过程中的骨折生长。尽管微地震事件的位置可能是有用的表征工具,并且已被许多作者使用,但我们超越了这些位置以更可靠地表征裂缝。层析成像反演,模糊聚类和剪切波分裂是三种可用于微地震数据以获得有关裂缝区域的可靠特征的方法。在本文中,我们展示了每种方法如何在表征过程中提供帮助。此外,我们演示了如何将它们彼此集成或与其他数据集成在一起,以实现更全面的方法。获得的知识可用于优化钻探目标或增产作业,以降低成本并最大程度地提高产量。

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