朱丹阳,牟建业,邹雨时,等. 中国东部某陆相断陷盆地页岩储层压裂裂缝复杂性研究[J]. 石油钻采工艺,2026,48(3):400-411, 422. DOI: 10.13639/j.odpt.202510008
引用本文: 朱丹阳,牟建业,邹雨时,等. 中国东部某陆相断陷盆地页岩储层压裂裂缝复杂性研究[J]. 石油钻采工艺,2026,48(3):400-411, 422. DOI: 10.13639/j.odpt.202510008
ZHU Danyang, MOU Jianye, ZOU Yushi, et al. Study on the complexity of hydraulic fractures in shale reservoirs of a continental rift basin in Eastern China[J]. Oil Drilling & Production Technology, 2026, 48(3): 400-411, 422. DOI: 10.13639/j.odpt.202510008
Citation: ZHU Danyang, MOU Jianye, ZOU Yushi, et al. Study on the complexity of hydraulic fractures in shale reservoirs of a continental rift basin in Eastern China[J]. Oil Drilling & Production Technology, 2026, 48(3): 400-411, 422. DOI: 10.13639/j.odpt.202510008

中国东部某陆相断陷盆地页岩储层压裂裂缝复杂性研究

Study on the complexity of hydraulic fractures in shale reservoirs of a continental rift basin in Eastern China

  • 摘要: 针对中国东部某陆相断陷盆地纹层状页岩储层中不同应力差、压裂液黏度、施工排量对裂缝扩展形态及复杂程度影响规律不明的问题,采用沙河街组井下岩心,基于纹层发育特征设计制样方案,开展室内小尺寸真三轴水力压裂正交实验,并对压后岩样进行阶梯降、升排量测试,通过拟合不同测试阶段排量与压力的对应关系,建立了一套量化裂缝复杂程度的方法。结果表明,较高的垂向应力差和施工规模有利于促进裂缝纵向穿纹层扩展,但易形成单一纵向裂缝;岩样起裂点附近的较高纹层密度易促进裂缝发生偏转和分支,是影响裂缝复杂程度的主要因素。研究结果为富有机质纹层状岩相页岩储层水力压裂选层布井、施工参数优化提供了新的依据。

     

    Abstract: To address the unclear effects of varying vertical stress differentials, fracturing fluid viscosity, and pump rates on fracture propagation morphology and complexity in lamellar shale reservoirs in a continental rift basin in eastern China, this study utilizes the core samples from the Shahejie Formation, designing sample preparation based on the development characteristics of lamination. A series of small-scale true triaxial hydraulic fracturing experiments were conducted, along with staged flow rate tests on post-fracturing samples. By fitting the relationship between pump rates and pressure during various testing stages, a method for quantifying fracture complexity was established. Results indicate that higher vertical stress differentials and treatment scales promote the vertical propagation of fractures across the laminated layers, but may lead to the formation of a single longitudinal fracture. In contrast, higher lamination densities near the initial fracturing point of rock samples facilitate fracture deflection and branching, making it a primary factor influencing fracture complexity. This research offers new guidance for optimizing layer selection and treatment parameters in hydraulic fracturing of organic-rich laminated shale reservoirs.

     

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