New Correlative Models to Improve Prediction of Fracture Permeability and Inertial Resistance Coefficient

被引:0
作者
Sajjad Foroughi
Saeid Jamshidi
Mahmoud Reza Pishvaie
机构
[1] Sharif University of Technology,Department of Chemical and Petroleum Engineering
来源
Transport in Porous Media | 2018年 / 121卷
关键词
Forchheimer flow; Non-Darcy flow; Inertial resistance coefficient; Fracture roughness; Lattice Boltzmann method; Fracture;
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摘要
Presence of fracture roughness and occurrence of nonlinear flow complicate fluid flow through rock fractures. This paper presents a qualitative and quantitative study on the effects of fracture wall surface roughness on flow behavior using direct flow simulation on artificial fractures. Previous studies have highlighted the importance of roughness on linear and nonlinear flow through rock fractures. Therefore, considering fracture roughness to propose models for the linear and nonlinear flow parameters seems to be necessary. In the current report, lattice Boltzmann method is used to numerically simulate fluid flow through different fracture realizations. Flow simulations are conducted over a wide range of pressure gradients through each fracture. It is observed that creeping flow at lower pressure gradients can be described using Darcy’s law, while transition to inertial flow occurs at higher pressure gradients. By detecting the onset of inertial flow and regression analysis on the simulation results with Forchheimer equation, inertial resistance coefficients are determined for each fracture. Fracture permeability values are also determined from Darcy flow as well. According to simulation results through different fractures, two parametric expressions are proposed for permeability and inertial resistance coefficient. The proposed models are validated using 3D numerical simulations and experimental results. The results obtained from these two proposed models are further compared with those obtained from the conventional models. The calculated average absolute relative errors and correlation coefficients indicate that the proposed models, despite their simplicity, present acceptable outcomes; the models are also more accurate compared to the available methods in the literature.
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页码:557 / 584
页数:27
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共 197 条
[51]  
Eker E(1995)On the relationship between mechanical and hydraulic apertures in rough-walled fractures J. Geophys. Res. Solid Earth (1978–2012) 100 24629-306
[52]  
Akin S(2007)Roughness control on hydraulic conductivity in fractured rocks Hydrol. J. 15 201-28
[53]  
Fillion E(1958)The physics of flow through porous media Soil Sci. 86 355-2252
[54]  
Noyer M-L(1986)Laboratory studies of gas flow through a single natural fracture Water Resour. Res. 22 1038-118
[55]  
Forchheimer P(2014)Non-Darcy flow of water through a packed column test Transp. Porous Media 101 215-2224
[56]  
Foroughi S(2013)Effect of gap and flow orientation on two-phase flow in an oil-wet gap: relative permeability curves and flow structures Int. J. Multiph. Flow 57 78-388
[57]  
Masihi M(2007)Determination of Forchheimer equation coefficients a and b Hydrol. Process. 21 534-25
[58]  
Jamshidi S(2003)A simple model for deviations from the cubic law for a fracture undergoing dilation or closure Pure Appl. Geophys. 160 1009-7074
[59]  
Pishvaie MR(1999)Homogenization of wall-slip gas flow through porous media Transp. Porous Media 36 293-54
[60]  
Foroughi S(1999)High-velocity flow in a rough fracture J. Fluid Mech. 383 1-1070