The efficient rotational pressure-correction schemes for the coupling Stokes/Darcy problem
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Publication:2004493
DOI10.1016/j.camwa.2019.06.033zbMath1443.65187OpenAlexW2957626944MaRDI QIDQ2004493
Jian Li, Md. Abdullah Al Mahbub, Haibiao Zheng, Min Yao
Publication date: 7 October 2020
Published in: Computers \& Mathematics with Applications (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.camwa.2019.06.033
stabilitynumerical experimentsfirst-order/second-order temporal schemerotational pressure-correction schemesStokes/Darcy system
Related Items (12)
Local and parallel efficient BDF2 and BDF3 rotational pressure-correction schemes for a coupled Stokes/Darcy system ⋮ A stabilized finite element method for the Stokes-Stokes coupling interface problem ⋮ A decoupled stabilized finite element method for the <scp>dual‐porosity‐Navier–Stokes</scp> fluid flow model arising in shale oil ⋮ A stable pressure-correction MAC scheme for the fluid-Poroelastic material interaction problem ⋮ Highly efficient ensemble algorithms for computing the Stokes-Darcy equations ⋮ Unconditionally energy-stable finite element scheme for the chemotaxis-fluid system ⋮ Decoupled modified characteristic FEMs for fully evolutionary Navier-Stokes-Darcy model with the Beavers-Joseph interface condition ⋮ A priori and a posteriori estimates of the stabilized finite element methods for the incompressible flow with slip boundary conditions arising in arteriosclerosis ⋮ Uncoupling evolutionary groundwater-surface water flows: stabilized mixed methods in both porous media and fluid regions ⋮ Rotational pressure-correction method for the Stokes/Darcy model based on the modular grad-div stabilization ⋮ A parallel, non-spatial iterative, and rotational pressure projection method for the nonlinear fluid-fluid interaction ⋮ A parallel Robin-Robin domain decomposition method based on modified characteristic FEMs for the time-dependent dual-porosity-Navier-Stokes model with the Beavers-Joseph interface condition
Uses Software
Cites Work
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