Effects of roughness and aperture on mesoscopic and macroscopic flow characteristics in rock fractures

被引:0
作者
Jinjin Yang
Zhechao Wang
Liping Qiao
Wei Li
Jie Liu
机构
[1] Northeastern University,Key Laboratory of Liaoning Province on Deep Engineering and Intelligent Technology
[2] Northeastern University,Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines
来源
Environmental Earth Sciences | 2023年 / 82卷
关键词
Rough fracture; Mesoscopic structure; Forchheimer equation; Roughness; Aperture;
D O I
暂无
中图分类号
学科分类号
摘要
Macroscopic nonlinear flow, which is closely related to mesoscopic flow structures such as vortices, is an important property of fluid flow and solute transport in rock fractures with a high pressure gradient. Both mesoscopic flow structure and macroscopic nonlinear flow of rock fractures are affected by fracture roughness and aperture. Therefore, the macroscopic seepage process in fractures is studied numerically by directly solving the Navier–Stokes equation. The results demonstrate that the Forchheimer equation can be used to describe the relationship between flow rate and pressure gradient of rough fractures with different apertures. The linear and nonlinear coefficients of the Forchheimer equation increase with fracture roughness and decrease with fracture aperture. Empirical formulas between the linear coefficient, the nonlinear coefficient, the fracture roughness and aperture are established. When the roughness is equal to zero, the empirical formulas can degenerate into conventional cubic law. In additions, the distribution characteristics of the mesoscopic flow structure in rough fractures are also investigated. The results show that the area and kinetic energy distribution characteristics of the mesoscopic flow structure in fractures with different roughness and apertures are similar. The frequency characteristics of the area and kinetic energy of the mesoscopic flow structure in fractures can be fitted with negative exponential and logarithmic normal functions, respectively. The effect of fracture roughness on area and kinetic energy distribution characteristics is significant, but the effect of aperture can be ignored. Empirical formulas between fracture roughness and mesoscopic flow structure characteristics are established for the first time.
引用
收藏
相关论文
共 151 条
[1]  
Briggs S(2017)Numerical modeling of the effects of roughness on flow and eddy formation in fractures J Rock Mech Geotech 9 105-115
[2]  
Karney BW(2003)Fluid flow in synthetic rough-walled fractures: Navier-Stokes, Stokes, and local cubic law simulations Water Resour Res 39 1085-94
[3]  
Sleep BE(2019)Analytical and visual assessment of fluid flow in fractured medium J Petrol Sci Eng 173 77-106
[4]  
Brush DJ(2011)The role of eddies inside pores in the transition from Darcy to Forchheimer flows Geophys Res Lett 38 L24405-202
[5]  
Thomson NR(2015)Non-Darcy's law-based analytical models for data interpretation of high-pressure packer tests in fractured rocks Eng Geol 199 91-389
[6]  
Canbolat S(2017)Effect of roughness on water flow through a synthetic single rough fracture Environ Earth Sci 76 186-606
[7]  
Parlaktuna M(2018)Pore-scale numerical investigation of the impacts of surface roughness: upscaling of reaction rates in rough fractures Geochim Cosmochim Acta 239 374-102
[8]  
Chaudhary K(2020)Quantitative characterization of single-phase flow through rough-walled fractures with variable apertures Geomech Geophys Geo-Energy Geo-Resour 6 42-1788
[9]  
Cardenas MB(2018)Influence of eddies on conservative solute transport through a 2D single self-affine fracture Int J Heat Mass Transf 121 597-58
[10]  
Deng W(2011)Groundwater development effects on different scale hydrogeological systems using head, hydrochemical and isotopic data and implications for water resources management: the Selva basin (NE Spain) J Hydrol 403 83-2525