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Decoupled schemes for a non-stationary mixed Stokes-Darcy model
by
Mu, Mo
, Zhu, Xiaohong
in
Acceleration of convergence
/ Airy equation
/ Approximation
/ Boundary conditions
/ Error analysis
/ Exact sciences and technology
/ Fluid flow
/ Mathematical extrapolation
/ Mathematical models
/ Mathematics
/ Methods of scientific computing (including symbolic computation, algebraic computation)
/ Modeling
/ Numerical analysis
/ Numerical analysis. Scientific computation
/ Numerical methods
/ Numerical methods in probability and statistics
/ Ordinary differential equations
/ Porous materials
/ Research article
/ Sciences and techniques of general use
2010
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Decoupled schemes for a non-stationary mixed Stokes-Darcy model
by
Mu, Mo
, Zhu, Xiaohong
in
Acceleration of convergence
/ Airy equation
/ Approximation
/ Boundary conditions
/ Error analysis
/ Exact sciences and technology
/ Fluid flow
/ Mathematical extrapolation
/ Mathematical models
/ Mathematics
/ Methods of scientific computing (including symbolic computation, algebraic computation)
/ Modeling
/ Numerical analysis
/ Numerical analysis. Scientific computation
/ Numerical methods
/ Numerical methods in probability and statistics
/ Ordinary differential equations
/ Porous materials
/ Research article
/ Sciences and techniques of general use
2010
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Decoupled schemes for a non-stationary mixed Stokes-Darcy model
by
Mu, Mo
, Zhu, Xiaohong
in
Acceleration of convergence
/ Airy equation
/ Approximation
/ Boundary conditions
/ Error analysis
/ Exact sciences and technology
/ Fluid flow
/ Mathematical extrapolation
/ Mathematical models
/ Mathematics
/ Methods of scientific computing (including symbolic computation, algebraic computation)
/ Modeling
/ Numerical analysis
/ Numerical analysis. Scientific computation
/ Numerical methods
/ Numerical methods in probability and statistics
/ Ordinary differential equations
/ Porous materials
/ Research article
/ Sciences and techniques of general use
2010
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Decoupled schemes for a non-stationary mixed Stokes-Darcy model
Journal Article
Decoupled schemes for a non-stationary mixed Stokes-Darcy model
2010
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Overview
We study numerical methods for solving a non-stationary mixed Stokes-Darcy problem that models coupled fluid flow and porous media flow. A decoupling approach based on interface approximation via temporal extrapolation is proposed for devising decoupled marching algorithms for the mixed model. Error estimates are derived and numerical experiments are conducted to demonstrate the computational effectiveness of the decoupling approach.
Publisher
American Mathematical Society
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