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Review: Mathematical expressions for estimating equivalent permeability of rock fracture networks

机译:述评:岩石裂隙网络等效渗透率的数学表达式

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Fracture networks play a more significant role in conducting fluid flow and solute transport in fractured rock masses, comparing with that of the rock matrix. Accurate estimation of the permeability of fracture networks would help researchers and engineers better assess the performance of projects associated with fluid flow in fractured rock masses. This study provides a review of previous works that have focused on the estimation of equivalent permeability of two-dimensional (2-D) discrete fracture networks (DFNs) considering the influences of geometric properties of fractured rock masses. Mathematical expressions for the effects of nine important parameters that significantly impact on the equivalent permeability of DFNs are summarized, including (1) fracture-length distribution, (2) aperture distribution, (3) fracture surface roughness, (4) fracture dead-end, (5) number of intersections, (6) hydraulic gradient, (7) boundary stress, (8) anisotropy, and (9) scale. Recent developments of 3-D fracture networks are briefly reviewed to underline the importance of utilizing 3-D models in future research.
机译:与岩石基质相比,裂缝网络在传导裂隙岩体中的流体流动和溶质运移方面发挥着更为重要的作用。裂缝网络渗透率的准确估算将有助于研究人员和工程师更好地评估与裂隙岩体中流体流动相关的项目的绩效。这项研究提供了对先前工作的回顾,该工作集中在考虑裂隙岩体的几何特性的影响下,对二维(2-D)离散裂缝网络(DFN)的等效渗透率的估算。总结了影响9个重要参数对DFN等效渗透率的影响的数学表达式,包括(1)裂缝长度分布,(2)孔径分布,(3)裂缝表面粗糙度,(4)裂缝死角,(5)交点数,(6)水力梯度,(7)边界应力,(8)各向异性和(9)比例。简要回顾了3-D裂缝网络的最新发展,以强调在未来研究中利用3-D模型的重要性。

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