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This article is available for purchase or by subscription. See below.
Abstract
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The problem of solution transfer between meshes arises frequently in computational
physics, e.g., in Lagrangian methods where remeshing occurs. The interpolation
process must be conservative, i.e., it must conserve physical properties, such as mass.
We extend previous works — which described the solution transfer process for
straight sided unstructured meshes — by considering high-order isoparametric meshes
with curved elements. To facilitate solution transfer, we numerically integrate the
product of shape functions via Green’s theorem along the boundary of the
intersection of two curved elements. We perform a numerical experiment and
confirm the expected accuracy by transferring test fields across two families of
meshes.
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Keywords
remapping, curved meshes, Lagrangian, solution transfer,
discontinuous Galerkin
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Mathematical Subject Classification 2010
Primary: 65D15, 65N30, 65N50
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Milestones
Received: 12 October 2018
Revised: 7 September 2024
Accepted: 9 September 2024
Published: 8 January 2025
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| © 2025 The Author(s), under
exclusive license to MSP (Mathematical Sciences
Publishers). |
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