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Performance-based fractal fracture model for complex fracture network simulation

机译:基于性能的分形断裂模型用于复杂断裂网络模拟

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The paper presents a novel hydraulic fracturing model for the characterization and simulation of the complex fracture network in shale gas reservoirs. We go beyond the existing method that uses planar or orthogonal conjugate fractures for representing the “complexity” of the network. Bifurcation of fractures is performed utilizing the Lindenmayer system based on fractal geometry to describe the fracture propagation pattern, density and network connectivity. Four controlling parameters are proposed to describe the details of complex fractures and stimulated reservoir volume (SRV). The results show that due to the multilevel feature of fractal fractures, the model could provide a simple method for contributing reservoir volume calibration. The primary- and second-stage fracture networks across the overall SRV are the main contributions to the production, while the induced fracture network just contributes another 20% in the late producing period. We also conduct simulation with respect to different refracturing cases and find that increasing the complexity of the fracture network provides better performance than only enhancing the fracture conductivity.
机译:本文提出了一种新颖的水力压裂模型,用于页岩气藏复杂裂缝网络的表征和模拟。我们超越了使用平面或正交共轭裂缝来表示网络“复杂性”的现有方法。利用基于分形几何学的Lindenmayer系统执行裂缝的分叉,以描述裂缝的传播方式,密度和网络连通性。提出了四个控制参数来描述复杂裂缝和增产油藏(SRV)的细节。结果表明,由于分形裂缝具有多层次特征,该模型可以为储层体积定标提供简便的方法。整个SRV中的第一级和第二级裂缝网络是产量的主要贡献,而诱导裂缝网络在生产后期仅贡献了20%。我们还针对不同的压裂情况进行了模拟,发现增加裂缝网络的复杂性比仅增加裂缝的电导率提供了更好的性能。

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