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Relationship between fractures, stress, strike-slip fault and reservoir productivity, China Shunbei oil field, Tarim Basin

机译:裂缝,应力,防滑断路与水库生产力的关系,中国顺北油田,塔里木盆地

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摘要

It is becoming widely recognized that a relationship exists between stress, stress heterogeneity, and the permeability of subsurface fractures and faults. We present an analysis of the Shunbei oil gas field, developed mainly in fractured carbonate, where active deformation has partitioned the reservoir into distinct structural and stress domains. These domains have differing geomechanical and structural attributes that control the permeability architecture of the field. The field is a composite of Caledonian contractional elements that have been modified by Hercynian contraction to produce basement-rooted strike-slip faults. Reservoir scale faults were interpreted in detail. Bulk reservoir performance is governed by the local stress architecture that acts on existing faults and their fracture damage zones to alter their permeability and, hence, their access to distributed oil. Reservoir potential is most enhanced in areas that have large numbers of fractures with high ratios of shear to normal stress. This occurs in areas of the field that are in a normal stress style. Comparatively, reservoir potential is lower in areas of the field that are in a strike-slip stress style where fewer fractures with high shear-to-normal stress ratios exist. Achieving the highest well productivity relies on tapping into critically stressed faults and their associated fracture damage zones. One wellbore has been drilled based on this concept, and shows an obvious improvement in petroleum productivity.
机译:众所周知,应力,应力异质性和地下裂缝和故障的渗透性之间存在关系。我们对顺北石油天然气场进行了分析,主要在裂缝碳酸盐中开发,其中有源变形已将水库分成不同的结构和应力域。这些域具有不同的地质力学和结构属性,可控制现场的渗透性架构。该领域是由海洋收缩修改的喀里多尼亚合约元素的综合,以产生地下室根的防滑断层。详细解释了储层尺度故障。散装储层性能受到现有故障的局部应力架构的管辖,其骨折损伤区以改变其渗透性,因此,他们可以进入分布式油。在具有大量剪切比剪切到正常应力的区域中,储层潜力最高增强。这发生在正常压力风格的领域的区域。相对轻地,储层电位在现场的区域中较低,其处于防撞应力风格,其中存在较高剪切到正常应力比的骨折。实现最高良好的生产率依赖于攻丝攻击危险的断裂及其相关的骨折损伤区域。基于这一概念钻探了一个井筒,并显示出石油生产率的显而易见。

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  • 来源
    《Carbonates And Evaporites》 |2020年第3期|共14页
  • 作者单位

    SINOPEC Res Inst Explorat &

    Prod 267 Middle Fourth Ring Rd Beijing 100083 Peoples R China;

    SINOPEC Res Inst Explorat &

    Prod 267 Middle Fourth Ring Rd Beijing 100083 Peoples R China;

    SINOPEC Res Inst Explorat &

    Prod 267 Middle Fourth Ring Rd Beijing 100083 Peoples R China;

    SINOPEC Res Inst Explorat &

    Prod 267 Middle Fourth Ring Rd Beijing 100083 Peoples R China;

    SINOPEC Res Inst Explorat &

    Prod 267 Middle Fourth Ring Rd Beijing 100083 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿物学;
  • 关键词

    Fracture; Stress; Slip tendency; Strike-slip fault; Tarim Basin;

    机译:骨折;压力;滑动倾向;防滑断层;塔里木盆地;

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