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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >High-Resolution Numerical Modeling of Complex and Irregular Fracture Patterns in Shale-Gas Reservoirs and Tight Gas Reservoirs
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High-Resolution Numerical Modeling of Complex and Irregular Fracture Patterns in Shale-Gas Reservoirs and Tight Gas Reservoirs

机译:页岩气致密气藏复杂不规则裂缝模式的高分辨率数值模拟

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摘要

Various models featuring horizontal wells with multiple fractures have been proposed to characterize flow behavior over time in tight gas systems and shale-gas systems. Currently, little is known about the effects of nonideal fracture patterns and coupled pri-mary-/secondary-fracture interactions on reservoir performance in unconventional gas reservoirs. We developed a 3D Voronoi mesh-generation application that provides the flexibility to accurately represent various complex and irregular fracture patterns. We also developed a numerical simulator of gas flow through tight porous media, and used several Voronoi grids to assess the potential performance of such irregular fractures on gas production from unconventional gas reservoirs. Our simulations involved up to a half-million cells, and we considered production periods that are orders of magnitude longer than the expected productive life of wells and reservoirs. Our aim was to describe a wide range of flow regimes that can be observed in irregular fracture patterns, and to fully assess even nuances in flow behavior. We investigated coupled primary/secondary fractures, with multiple/vertical hydraulic fractures intersecting horizontal secondary "stress-release" fractures. We studied irregular fracture patterns to show the effect of fracture angularity and nonplanar fracture configurations on production. The results indicate that the presence of high-conductivity secondary fractures results in the highest increase in production, whereas, contrary to expectations, strictly planar and orthogonal fractures yield better production performance than nonplanar and nonorthogonal fractures with equivalent propped-fracture lengths.
机译:已经提出了具有多个裂缝的水平井的各种模型,以表征致密气系统和页岩气系统中随时间的流动行为。目前,关于非常规气藏的非理想裂缝模式和主次生耦合作用对储层性能的影响知之甚少。我们开发了3D Voronoi网格生成应用程序,该应用程序具有灵活性,可以准确地表示各种复杂和不规则的裂缝模式。我们还开发了通过紧密多孔介质的气体流动的数值模拟器,并使用了多个Voronoi网格来评估这种非常规裂缝对非常规气藏生产天然气的潜在性能。我们的模拟涉及多达50万个单元,并且我们认为生产期比井和油层的预期生产寿命长几个数量级。我们的目的是描述可以在不规则裂缝模式中观察到的各种流动形式,并全面评估流动行为中的细微差别。我们研究了耦合的一次/二次裂缝,其中多个/垂直的水力裂缝与水平的二次“应力释放”裂缝相交。我们研究了不规则的裂缝模式,以显示裂缝角度和非平面裂缝构造对生产的影响。结果表明,高导电性二次裂缝的存在导致产量的最高增长,而与预期相反,严格的平面和正交裂缝比具有相等支撑裂缝长度的非平面和非正交裂缝具有更好的生产性能。

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