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

机译:二维裂缝/管网中溶质运移的模拟和分析:SOLFRAC程序

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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, R, 2003c. Simulation of solute transport in discrete fracture networks using the time domain random walk method. Earth Planet. Sci. Lett., 6566: 1-8.] 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://labo.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.
机译:时域随机游走(TDRW)方法是最近由Delay和Bodin [Delay,F.和Bodin,J.,2001.开发的。时域随机游走方法通过裂缝网络中的对流扩散和矩阵扩散来模拟传输。地理学。 Res。 Lett。,28(21):4051 -4054。]和Bodin等。 [Bodin,J.,Porel,G. and Delay,R,2003c。使用时域随机游走法模拟离散裂缝网络中的溶质运移。地球行星。科学Lett。,6566:1-8。],用于模拟离散裂缝网络中的溶质运移。假设裂缝网络可以合理地由互连的一维管道(即流道)网络表示。造成的过程包括:(1)通道中的对流和流体动力扩散;(2)基质扩散;(3)扩散到裂缝平面内的停滞区;(4)裂缝壁和基质中的吸附反应;(5) )线性衰减,以及(6)裂缝相交处的质量共享。 TDRW方法方便且在计算成本方面非常高效,因为它允许一步一步地计算网络中每个键的粒子停留时间。该方法已经用C ++进行了编程,并且已经在努力开发一种名为SOLFRAC的高效且用户友好的软件。该程序可从URL http://labo.univ-poitiers.fr/hydrasa/intranet/telechargement.htm免费下载。它计算溶质向2D管网的输运,同时考虑不同类型的注入和每个流道内局部分散的不同概念。还可以进行仿真后分析,例如整个网络规模的平均速度或宏观色散。该程序可用于评估给定的输送机制如何影响裂缝网络的宏观输送行为。例如,在分析溶液中,也可以使用它来解释在单个裂缝中进行的实验室或现场示踪剂测试实验。

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