Simulation and analysis of solute transport in 2D fracture/pipe networks: The SOLFRAC program

被引:45
作者
Bodin, Jacques
Porel, Gilles
Delay, Fred
Ubertosi, Fabrice
Bernard, Stephane
de Dreuzy, Jean-Raynald
机构
[1] Univ Poitiers, CNRS, UMR 6532, F-86022 Poitiers, France
[2] Univ Rennes 1, CNRS, UMR 4661, F-35042 Rennes, France
关键词
numerical modelling; solute transport; fractured rocks;
D O I
10.1016/j.jconhyd.2006.07.005
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Time Domain Random Walk (TDRW) method has been recently developed by Delay and Bodin [Delay, F. and Bodin, J., 2001. Time domain random walk method to simulate transport by advection-dispersion and matrix diffusion in fracture networks. Geophys. Res. Lett., 28(21): 4051-4054.] and Bodin et al. [Bodin, J., Porel, G. and Delay, F., 2003c. Simulation of solute transport in discrete fracture networks using the time domain random walk method. Earth Planet. Sci. Lett., 6566: 1-8.1 for simulating solute transport in discrete fracture networks. It is assumed that the fracture network can reasonably be represented by a network of interconnected one-dimensional pipes (i.e. flow channels). Processes accounted for are: (1) advection and hydrodynamic dispersion in the channels, (2) matrix diffusion, (3) diffusion into stagnant zones within the fracture planes, (4) sorption reactions onto the fracture walls and in the matrix, (5) linear decay, and (6) mass sharing at fracture intersections. The TDRW method is handy and very efficient in terms of computation costs since it allows for the one-step calculation of the particle residence time in each bond of the network. This method has been programmed in C++, and efforts have been made to develop an efficient and user-friendly software, called SOLFRAC. This program is freely downloadable at the URL http://Iabo.univ-poitiers.fr/hydrasa/intranet/telechargement.htm. It calculates solute transport into 2D pipe networks, while considering different types of injections and different concepts of local dispersion within each flow channel. Post-simulation analyses are also available, such as the mean velocity or the macroscopic dispersion at the scale of the entire network. The program may be used to evaluate how a given transport mechanism influences the macroscopic transport behaviour of fracture networks. It may also be used, as is the case, e.g., with analytical solutions, to interpret laboratory or field tracer test experiments performed in single fractures. (c) 2006 Elsevier B.V All rights reserved.
引用
收藏
页码:1 / 28
页数:28
相关论文
共 50 条
[21]   Experimental study and characteristic finite element simulation of solute transport in a cross-fracture [J].
Chen, Long-fei ;
Huang, Yong .
GEOSCIENCE FRONTIERS, 2016, 7 (06) :963-967
[22]   Fracture network optimization for simulating 2D variable-density flow and transport [J].
Hirthe, Eugenia M. ;
Graf, Thomas .
ADVANCES IN WATER RESOURCES, 2015, 83 :364-375
[23]   Experimental study and characteristic finite element simulation of solute transport in a cross-fracture [J].
Longfei Chen ;
Yong Huang .
Geoscience Frontiers, 2016, (06) :963-967
[24]   A rapid, simplified, hybrid modeling approach for simulating solute transport in discrete fracture networks [J].
Khafagy, Mohamed ;
Dickson-Anderson, Sarah ;
El-Dakhakhni, Wael .
COMPUTERS AND GEOTECHNICS, 2022, 151
[25]   THE SENSITIVITY ANALYSIS ON GROUNDWATER FLOW AND SOLUTE TRANSPORT OF SUTRA 2D3D.1 [J].
Giap, Sunny Goh Eng .
JURNAL TEKNOLOGI, 2009, 51
[26]   HeapSim2D-A 2D axisymmetric model of heap leaching under drip emitters I. Hydrology and solute transport [J].
Dixon, David G. ;
Afewu, Kodjo I. .
MINERALS ENGINEERING, 2022, 183
[27]   Stochastic Flow Simulation and Particle Transport in a 2D Layer of Random Porous Medium [J].
Kurbanmuradov, O. A. ;
Sabelfeld, K. K. .
TRANSPORT IN POROUS MEDIA, 2010, 85 (02) :347-373
[28]   3D analysis of transverse pipe-soil interaction using 2D soil slices [J].
Martin, C. M. ;
Kong, D. ;
Byrne, B. W. .
GEOTECHNIQUE LETTERS, 2013, 3 :119-123
[29]   Modeling of Solute Transport in a 3D Rough-Walled Fracture–Matrix System [J].
Liangchao Zou ;
Lanru Jing ;
Vladimir Cvetkovic .
Transport in Porous Media, 2017, 116 :1005-1029
[30]   Coupling between shallow water and solute flow equations:: analysis and management of source terms in 2D [J].
Murillo, J ;
Burguete, J ;
Brufau, P ;
García-Navarro, P .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2005, 49 (03) :267-299