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Mapping permeable subsurface fracture networks: A case study on the Cooper Basin, Australia

机译:绘制可渗透地下裂缝网络图:以澳大利亚库珀盆地为例

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The spatial distribution of permeable fracture networks is constrained in the subsurface Cooper Basin (Australia) through the integration of most positive curvature (K+) analysis of five three dimensional (3D) seismic surveys, wellbore fracture data, and geomechanical modelling. The K+ provides the likely distribution of subsurface extensional fractures based on the stress redistribution along the outer arc of an anticline. These results are reprocessed into the semblance (similarity) attribute to improve the signal-noise ratio prior to being extracted along the gas-rich and low permeability Patchawarra Formation. The subsurface fracture distribution maps show the geometry and density of extensional fractures that have been shown to facilitate fluid migration in this province, particularly those striking SE-NW and E-W, as these are properly oriented to undergo tensile reactivation. The density of these permeable SE-NW and E-W striking fracture sets is predicted to significantly increase along E-W elongate anticlines and may contribute to improved hydrocarbon recovery in this low permeability stratigraphic interval. We show that wellbore fracture data (n = 917) in the Patchawarra Formation presents a close relationship to K+ results and can be used to generate high density structural data in this basin, with the methodology applicable to other subsurface and offshore provinces.
机译:通过对五个三维(3D)地震勘测的最大正曲率(K +)分析,井眼裂缝数据和地质力学建模的集成,在地下库珀盆地(澳大利亚)中,渗透性裂缝网络的空间分布受到限制。 K +根据沿背斜外弧的应力重新分布,提供了地下延伸裂缝的可能分布。将这些结果重新处理为相似性(相似性)属性,以在沿富含气体和低渗透率的帕契瓦拉地层提取之前提高信噪比。地下裂缝分布图显示了该地区的扩张裂缝的几何形状和密度,这些裂缝和裂缝密度有助于该地区的流体运移,特别是那些以SE-NW和E-W为主的裂缝,因为这些裂缝的方向正确,可以进行拉伸活化。预计这些可渗透SE-NW和E-W撞击裂缝的密度将沿着E-W细长背斜显着增加,并可能有助于改善该低渗透性地层层段的油气采收率。我们显示,Patchawarra组的井眼裂缝数据(n = 917)与K +结果密切相关,可用于在该盆地生成高密度结构数据,其方法学适用于其他地下和近海省份。

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