We present a coupling framework for Stokes-Darcy systems valid for arbitrary flow direction at low Reynolds numbers and for isotropic porous media. The proposed method is based on an overlapping domain decomposition concept to represent the transition region between the free-fluid and the porous-medium regimes. Matching conditions at the interfaces of the decomposition impose the continuity of velocity (on one interface) and pressure (on the other one) and the resulting algorithm can be easily implemented in a non-intrusive way. The numerical approximations of the fluid velocity and pressure obtained by the studied method converge to the corresponding counterparts computed by direct numerical simulation at the microscale, with convergence rates equal to suitable powers of the scale separation parameter ε in agreement with classical results in homogenization.

A coupling concept for Stokes-Darcy systems: The ICDD method

Gervasio P.
2024-01-01

Abstract

We present a coupling framework for Stokes-Darcy systems valid for arbitrary flow direction at low Reynolds numbers and for isotropic porous media. The proposed method is based on an overlapping domain decomposition concept to represent the transition region between the free-fluid and the porous-medium regimes. Matching conditions at the interfaces of the decomposition impose the continuity of velocity (on one interface) and pressure (on the other one) and the resulting algorithm can be easily implemented in a non-intrusive way. The numerical approximations of the fluid velocity and pressure obtained by the studied method converge to the corresponding counterparts computed by direct numerical simulation at the microscale, with convergence rates equal to suitable powers of the scale separation parameter ε in agreement with classical results in homogenization.
2024
PE1_18 Scientific computing and data processing
PE1_17 Numerical analysis
PE1_19 Control theory and optimization
PE1_20 Application of mathematics in sciences
Inglese
513
Darcy equations; Direct numerical simulations; Domain decomposition methods; Homogenization; Multiscale analysis; Stokes equations
MIUR (compresi PRIN FIRB,FISR)
https://www.sciencedirect.com/science/article/pii/S0021999124004534?via=ihub
   Full and Reduced order modelling of coupled systems: focus on non- matching methods and automatic learning (FaReX)
   FaReX
   MUR
Not applicable
2
info:eu-repo/semantics/article
262
Discacciati, M.; Gervasio, P.
1 Contributo su Rivista::1.1 Articolo in rivista
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/600645
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