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首页> 外文期刊>Petroleum exploration and development >Fracture characteristics under the coupling effect of tectonic stress and fluid pressure: A case study of the fractured shale oil reservoir in Liutun subsag, Dongpu Sag, Bohai Bay Basin, Eastern China
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Fracture characteristics under the coupling effect of tectonic stress and fluid pressure: A case study of the fractured shale oil reservoir in Liutun subsag, Dongpu Sag, Bohai Bay Basin, Eastern China

机译:构造应力与流体压力耦合作用下的断裂特征-以中国东部渤海湾盆地东圃凹陷六屯洼陷页岩油藏裂缝为例

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摘要

Based on the integrated study on core description, fluid inclusions and basin modeling, and considering the coupling effect of tectonic stress and fluid pressure, the characteristics of fractures were analyzed in the inter-salt fractured shale oil reservoirs of strong overpressure in upper Sha 3 member (Es3) in Liutun subsag, Dongpu Sag, Bohai Bay Basin. The results show that: (1) Most of fractures in this reservoir are structural or hydraulic, with scattered occurrence, even horizontal hydraulic fractures in strong overpressure area; (2) Overpressure changes the differential stress and principal stress direction by changing the poroelastic response of rock and the seepage force of pore fluid, and thus influencing the type and occurrence of fractures; (3) Structural and hydraulic fractures can be divided into seven types according to their stress states. The development of those fractures includes 3 stages. The transverse tension and longitudinal tension fractures are mainly developed in the first stage, tectonic shear fractures mainly in the second and third stages, and hydraulic fractures mainly in the early phase of the second stage before tectonic uplift. When tectonic stress and overpressure are both strong, the type and occurrence of fractures are diverse.
机译:在岩心描述,流体包裹体和盆地模拟的综合研究的基础上,考虑构造应力和流体压力的耦合作用,分析了上沙三段盐分间裂缝性强超压页岩油藏的裂缝特征。 (ES3)位于渤海湾盆地东埔凹陷六屯洼陷。结果表明:(1)该储层裂缝多为结构性或水力裂缝,分散分布,在强超压区甚至存在水平水力裂缝; (2)超压通过改变岩石的孔隙弹性响应和孔隙流体的渗流力来改变压差和主应力方向,从而影响裂缝的类型和发生; (3)根据应力状态的不同,结构裂缝和水力裂缝可分为七种类型。这些骨折的发展包括三个阶段。横向张力和纵向张力裂缝主要发生在第一阶段,构造剪切裂缝主要发生在第二和第三阶段,水力裂缝主要发生在构造抬升前的第二阶段的早期。当构造应力和超压都较强时,裂缝的类型和发生是多样的。

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