An OpenFOAM face-centred solver for incompressible flows robust to mesh distortion
Author (s): Cortellessa, D.; Giacomini, M. and Huerta, A.Journal: Lecture Notes on computational science and engineering
Volume: 146
Pages: 253 - 269
Date: 2025
Abstract:
This work presents an overview of mesh-induced errors commonly experienced by cell-centred finite volumes (CCFV), for which the face-centred finite volume (FCFV) paradigm offers competitive solutions. In particular, a robust FCFV solver for incompressible laminar flows is integrated in OpenFOAM and tested on a set of steady-state and transient benchmarks. The method outperforms standard simpleFoam and pimpleFoam algorithms in terms of optimal convergence, accuracy, stability, and robustness. Special attention is devoted to motivate and numerically demonstrate the ability of the FCFV method to treat non-orthogonal, stretched, and skewed meshes, where CCFV schemes exhibit shortcomings.
Bibtex:
@InCollection{Cortellessa-CGH-25,
author = {Davide Cortellessa and Matteo Giacomini and Antonio Huerta},
title = {An {OpenFOAM} face-centred solver for incompressible flows
robust to mesh distortion},
booktitle = {Emerging Technologies in Computational Sciences for Industry,
Sustainability and Innovation},
editor = {M. Giacomini and S. Perotto and G. Rozza},
publisher = {Springer Nature Switzerland},
address = {Cham},
series = {Lecture Notes in Computational Science and Engineering},
volume = {146},
pages = {253--269},
year = {2025},
doi = {10.1007/978-3-031-95709-3_16},
}