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A New Geometrical Model of Fluid Flow in Rock Fractures for Valid Application of the Cubic Law

机译:立方法有效应用的岩骨折中流体流动的新几何模型

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The cubic law (CL) is one of the most commonly applied physical laws for flow through rock fractures and fractured media, but many studies indicate that the CL is often not adequate. We investigate the establishment conditions of valid applying the "cubic law" to flow in fractures. A dimensional analysis of the N-S equations yields three conditions for the applicability of cubic law, as a leading order approximation in a local fracture segment with parallel walls. These conditions may not be met in many natural rock fractures as whole and demonstrate that the "cubic law" should be exactly applied in local segments (local cubic law, LCL). In this way, a new 2D discrete equivalent model for natural rough fractures is introduced, and its equivalent aperture and flow formulation are derived. By comparing the developed model and experimental results of different fractures, good accuracy was found, and the model was validated. The model could be useful for theory studies of flows through real rock fractures.
机译:立方法(CL)是用于流过岩石裂隙和裂缝媒体最常用的物理定律之一,但许多研究表明,CL往往是不够的。我们调查的有效应用“立方定律”在裂缝流入设立条件。所述N-S方程产量为立方法的适用性三个条件的三维分析,如结合平行壁的局部断裂链段的领头阶近似。这些条件可能无法在许多天然岩石裂隙作为一个整体来满足,并证明“立方法”应该以本地段(本地立方法,LCL)被精确地应用。以这种方式,新的二维离散引入天然粗骨折等效模型,并且其等效孔和流动制剂中的。通过比较发达的模型和不同的骨折的实验结果,精度好被发现,和模型进行了验证。该模型可以通过真实的岩石裂隙流动的理论研究中。

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