DOI10.2140/camcos.2010.5.1zbMath1189.35226OpenAlexW2088754567MaRDI QIDQ970447
Juan Galvis, Markus V. Sarkis
Publication date: 19 May 2010
Published in: Communications in Applied Mathematics and Computational Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.2140/camcos.2010.5.1
Least squares approach for the time-dependent nonlinear Stokes-Darcy flow,
Unconditionally stable numerical methods for Cahn-Hilliard-Navier-Stokes-Darcy system with different densities and viscosities,
A Domain Decomposition Method for the Steady-State Navier--Stokes--Darcy Model with Beavers--Joseph Interface Condition,
A global-in-time domain decomposition method for the coupled nonlinear Stokes and Darcy flows,
On Stokes--Ritz Projection and Multistep Backward Differentiation Schemes in Decoupling the Stokes--Darcy Model,
Robin-Robin domain decomposition methods for the steady-state Stokes-Darcy system with the Beavers-Joseph interface condition,
Coupling nonlinear Stokes and Darcy flow using mortar finite elements,
Non-iterative domain decomposition methods for a non-stationary Stokes-Darcy model with Beavers-Joseph interface condition,
Partitioned treatment of uncertainty in coupled domain problems: a separated representation approach,
Approximation of the Stokes-Darcy system by optimization,
Mortar multiscale finite element methods for Stokes-Darcy flows,
Stochastic multiscale flux basis for Stokes-Darcy flows,
FETI-DP for Stokes-Mortar-Darcy Systems,
Nonconforming time discretization based on Robin transmission conditions for the Stokes-Darcy system,
DUAL-PRIMAL METHODS FOR THE CARDIAC BIDOMAIN MODEL,
Parallel, non-iterative, multi-physics domain decomposition methods for time-dependent Stokes-Darcy systems,
Local and parallel finite element methods for the mixed Navier–Stokes/Darcy model,
Decoupling the stationary Navier-Stokes-Darcy system with the Beavers-Joseph-Saffman interface condition,
Robin-Robin domain decomposition methods for the dual-porosity-conduit system,
Domain decomposition for coupled Stokes and Darcy flows,
A Dual-Porosity-Stokes Model and Finite Element Method for Coupling Dual-Porosity Flow and Free Flow,
A multiscale flux basis for mortar mixed discretizations of Stokes-Darcy flows,
Modeling and a Robin-type decoupled finite element method for dual-porosity-Navier-Stokes system with application to flows around multistage fractured horizontal wellbore