Stochastic modeling of flow and conservative transport in three-dimensional discrete fracture networks
<p>This study presents the stochastic Monte Carlo simulation (MCS) to assess the uncertainty of flow and conservative transport in 3-D discrete fracture networks (DFNs). The MCS modeling workflow involves a number of developed modules, including a DFN generator, a DFN mesh generator, and a fin...
Main Authors: | , , , , |
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Format: | Article |
Language: | English |
Published: |
Copernicus Publications
2019-01-01
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Series: | Hydrology and Earth System Sciences |
Online Access: | https://www.hydrol-earth-syst-sci.net/23/19/2019/hess-23-19-2019.pdf |
Summary: | <p>This study presents the stochastic Monte Carlo
simulation (MCS) to assess the uncertainty of flow and conservative transport
in 3-D discrete fracture networks (DFNs). The MCS modeling workflow involves
a number of developed modules, including a DFN generator, a DFN mesh
generator, and a finite element model for solving steady-state flow and
conservative transport in 3-D DFN realizations. The verification of the
transport model relies on the comparison of transport solutions obtained from
HYDROGEOCHEM model and an analytical model. Based on 500 DFN realizations in
the MCS, the study assesses the effects of fracture intensities on the
variation of equivalent hydraulic conductivity and the exhibited behaviors of
concentration breakthrough curves (BTCs) in fractured networks. Results of
the MCS show high variations in head and Darcy velocity near the specified
head boundaries. There is no clear stationary region obtained for the head
variance. However, the transition zones of nonstationarity for <span class="inline-formula"><i>x</i></span>-direction
Darcy velocity is obvious, and the length of the transition zone is found to
be close to the value of the mean fracture diameter for the DFN realizations.
The MCS for DFN transport indicates that a small sampling volume in DFNs can
lead to relatively high values of mean BTCs and BTC variations.</p> |
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ISSN: | 1027-5606 1607-7938 |