From particles to precision. Simulating subsonic turbulence with Smoothed Particle Hydrodynamics
Abstract
Direct numerical simulation of subsonic turbulence with smoothed particle hydrodynamics (SPH) has traditionally been hampered by zeroth-order (E0) errors, inaccurate gradient evaluations, and excessive numerical dissipation. We demonstrate that the recently developed SPH-EXA code can overcome these challenges, producing results similar to those of other state-of-the-art non-SPH codes, such as AREPO and GIZMO. We show that SPH-EXA accurately reproduces the Kolmogorov inertial range scaling in the subsonic regime with increasing resolution, closely matching state-of-the-art non-SPH methods. This is an outstanding result given the important role of SPH codes in astrophysics and cosmology, and the ubiquity of turbulent phenomena.
Cite
@article{arxiv.2503.10273,
title = {From particles to precision. Simulating subsonic turbulence with Smoothed Particle Hydrodynamics},
author = {Rubén M. Cabezón and Domingo García-Senz and Oliver Avril and Osman Seckin Simsek and Sebastian Keller and Axel S. Lechuga and Lucio Mayer and Ralf Klessen and Florina M. Ciorba},
journal= {arXiv preprint arXiv:2503.10273},
year = {2026}
}
Comments
9 pages, 11 figures, Submitted to A&A