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An Analytical Model for Evaluating the Hydraulic Conductivity of the Fracture‐Conduit‐Matrix System
by
Wang, Mingyang
, Wang, Enzhi
, Zhang, Shuai
, Liu, Xiaoli
in
Boundary conditions
/ Direct numerical simulation
/ Flow characteristics
/ Flow velocity
/ Fractures
/ Hydraulic conductivity
/ Hydraulics
/ Numerical simulations
/ Permeability
/ Viscosity
2025
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An Analytical Model for Evaluating the Hydraulic Conductivity of the Fracture‐Conduit‐Matrix System
by
Wang, Mingyang
, Wang, Enzhi
, Zhang, Shuai
, Liu, Xiaoli
in
Boundary conditions
/ Direct numerical simulation
/ Flow characteristics
/ Flow velocity
/ Fractures
/ Hydraulic conductivity
/ Hydraulics
/ Numerical simulations
/ Permeability
/ Viscosity
2025
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Do you wish to request the book?
An Analytical Model for Evaluating the Hydraulic Conductivity of the Fracture‐Conduit‐Matrix System
by
Wang, Mingyang
, Wang, Enzhi
, Zhang, Shuai
, Liu, Xiaoli
in
Boundary conditions
/ Direct numerical simulation
/ Flow characteristics
/ Flow velocity
/ Fractures
/ Hydraulic conductivity
/ Hydraulics
/ Numerical simulations
/ Permeability
/ Viscosity
2025
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An Analytical Model for Evaluating the Hydraulic Conductivity of the Fracture‐Conduit‐Matrix System
Journal Article
An Analytical Model for Evaluating the Hydraulic Conductivity of the Fracture‐Conduit‐Matrix System
2025
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Overview
In the fracture‐conduit‐matrix system, distinct shape differences among water‐conducting channels (fractures and conduits) hinder developing an analytical model for flow characteristics and hydraulic conductivity assessment. To address this, we introduce the elliptic‐conduit‐matrix model (ECMM) under velocity slip interface conditions. This analytical model, adaptable to elliptical axis and matrix permeability variations, can be reduced to fracture‐matrix model, conduit‐matrix model, smooth elliptic (circular) pipes, and smooth fractures. Direct numerical simulations on flow in single, multi, and mixed channel‐matrix systems (varying channel counts and matrix permeabilities) validated the ECMM, demonstrating a higher precision compared to the previous models.
Publisher
John Wiley & Sons, Inc
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