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Numerical Simulation of Hydraulic Fracture Propagation in Coal Seams with Discontinuous Natural Fracture Networks

机译:间断天然裂缝网络对煤层水力压裂扩展的数值模拟

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摘要

To investigate the mechanism of hydraulic fracture propagation in coal seams with discontinuous natural fractures, an innovative finite element meshing scheme for modeling hydraulic fracturing was proposed. Hydraulic fracture propagation and interaction with discontinuous natural fracture networks in coal seams were modeled based on the cohesive element method. The hydraulic fracture network characteristics, the growth process of the secondary hydraulic fractures, the pore pressure distribution and the variation of bottomhole pressure were analyzed. The improved cohesive element method, which considers the leak-off and seepage behaviors of fracturing liquid, is capable of modeling hydraulic fracturing in naturally fractured formations. The results indicate that under high stress difference conditions, the hydraulic fracture network is spindle-shaped, and shows a multi-level branch structure. The ratio of secondary fracture total length to main fracture total length was 2.11~3.62, suggesting that the secondary fractures are an important part of the hydraulic fracture network in coal seams. In deep coal seams, the break pressure of discontinuous natural fractures mainly depends on the in-situ stress field and the direction of natural fractures. The mechanism of hydraulic fracture propagation in deep coal seams is significantly different from that in hard and tight rock layers.
机译:为了研究具有不连续天然裂缝的煤层中水力压裂扩展的机理,提出了一种新颖的有限元网格划分水压压裂模型。基于内聚元法,模拟了煤层中水力压裂的扩展以及与不连续天然压裂网络的相互作用。分析了水力压裂网络的特征,二次水力压裂的发育过程,孔隙压力分布和井底压力变化。考虑到压裂液的渗漏和渗流特性的改进内聚元法能够模拟天然裂缝地层中的水力压裂。结果表明,在高应力差条件下,水力压裂网络呈纺锤状,并呈现多级分支结构。次生裂缝总长与主裂缝总长之比为2.11〜3.62,表明次生裂缝是煤层水力压裂网络的重要组成部分。在深部煤层中,不连续天然裂缝的破裂压力主要取决于地应力场和天然裂缝的方向。深部煤层水力压裂扩展机理与坚硬岩石层中的水力压裂扩展机理明显不同。

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