AbstractNatural fractures have a significant influence on the propagation geometry of hydraulic fractu'/> Effect of Random Natural Fractures on Hydraulic Fracture Propagation Geometry in Fractured Carbonate Rocks
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Effect of Random Natural Fractures on Hydraulic Fracture Propagation Geometry in Fractured Carbonate Rocks

机译:随机自然骨折对裂缝碳酸盐岩中液压断裂繁殖几何的影响

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AbstractNatural fractures have a significant influence on the propagation geometry of hydraulic fractures in fractured reservoirs. True triaxial volumetric fracturing experiments, in which random natural fractures are created by placing cement blocks of different dimensions in a cuboid mold and filling the mold with additional cement to create the final test specimen, were used to study the factors that influence the hydraulic fracture propagation geometry. These factors include the presence of natural fractures around the wellbore, the dimension and volumetric density of random natural fractures and the horizontal differential stress. The results show that volumetric fractures preferentially formed when natural fractures occurred around the wellbore, the natural fractures are medium to long and have a volumetric density of 6–9%, and the stress difference is less than 11?MPa. The volumetric fracture geometries are mainly major multi-branch fractures with fracture networks or major multi-branch fractures (2–4 fractures). The angles between the major fractures and the maximum horizontal in situ stress are 30°–45°, and fracture networks are located at the intersections of major multi-branch fractures. Short natural fractures rarely led to the formation of fracture networks. Thus, the interaction between hydraulic fractures and short natural fractures has little engineering significance. The conclusions are important for field applications and for gaining a deeper understanding of the formation process of volumetric fractures.]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”OUTPUTMEDIUM =“全部”> <标题>抽象 自然​​骨折对传播几何具有显着影响裂缝储层中的液压骨折。真正的三轴体积压裂实验,其中通过将不同尺寸的水泥块放置在长方体模具中并用额外的水泥填充模具来产生最终试样来产生随机自然骨折,用于研究影响液压骨折繁殖的因素几何学。这些因素包括围绕井筒,随机自然骨折的尺寸和体积密度和水平差分应力的自然骨折存在。结果表明,当井筒周围发生的自然骨折时,体积裂缝优先形成,自然裂缝是较长的,具有6-9%的体积密度,应力差小于11℃。MPa。体积骨折几何形状主要是具有骨折网络或主要多分支骨折(2-4骨折)的主要多分支骨折。主要骨折和原位应力的最大水平之间的角度为30°-45°,并且裂缝网络位于主要多分支骨折的交叉点处。短自然骨折很少导致骨折网络的形成。因此,液压骨折和短自然骨折之间的相互作用几乎没有工程意义。结论对于现场应用是重要的,并且对体积骨折的形成过程进行更深的了解。 ]]>

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