4.6 Article

AN ASYMPTOTICALLY COMPATIBLE COUPLING FORMULATION FOR NONLOCAL INTERFACE PROBLEMS WITH JUMPS

Journal

SIAM JOURNAL ON SCIENTIFIC COMPUTING
Volume 45, Issue 3, Pages A1359-A1384

Publisher

SIAM PUBLICATIONS
DOI: 10.1137/22M1490351

Keywords

nonlocal equations; interface problems; imperfect interfaces; finite element discretizations; coupling; asymptotic behavior of solutions

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This study presents a mathematically rigorous formulation for a nonlocal interface problem with jumps, and proposes an asymptotically compatible finite element discretization for the weak form of the interface problem. Numerical tests demonstrate the applicability, numerical convergence to exact nonlocal solutions, convergence to the local limit, and robustness with respect to the patch test of the technique.
We introduce a mathematically rigorous formulation for a nonlocal interface problem with jumps and propose an asymptotically compatible finite element discretization for the weak form of the interface problem. After proving the well-posedness of the weak form, we demonstrate that solutions to the nonlocal interface problem converge to the corresponding local counterpart when the nonlocal data are appropriately prescribed. Several numerical tests in one and two dimensions show the applicability of our technique, its numerical convergence to exact nonlocal solutions, its convergence to the local limit when the horizons vanish, and its robustness with respect to the patch test.

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